edge_profiles

Edge plasma profiles (includes the scrape-off layer and possibly part of the confined plasma)

  • Maximum occurrences (MDS+ backend only): 10

New in version 3.22.0: lifecycle status active

Changed in version 3.42.0.

ids_propertiesstructure

See common IDS structure reference: ids_properties.

vacuum_toroidal_fieldstructureCharacteristics of the vacuum toroidal field (used in rho_tor […]

Characteristics of the vacuum toroidal field (used in rho_tor definition and in the normalization of current densities)

vacuum_toroidal_field/r0mFLT_0DReference major radius where the vacuum toroidal magnetic field […]

Reference major radius where the vacuum toroidal magnetic field is given (usually a fixed position such as the middle of the vessel at the equatorial midplane)

vacuum_toroidal_field/b0(:)TFLT_1DVacuum toroidal field at R0 [T]; Positive sign means anti-clockwise […]

Vacuum toroidal field at R0 [T]; Positive sign means anti-clockwise when viewing from above. The product R0B0 must be consistent with the b_tor_vacuum_r field of the tf IDS.

Coordinate

1

time

midplanestructureChoice of midplane definition (use the lowest index number if […]

Choice of midplane definition (use the lowest index number if more than one value is relevant)

This is an identifier. See midplane_identifier for the available options.

New in version >3.32.1.

midplane/nameSTR_0DShort string identifier

Short string identifier

midplane/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

midplane/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)AoSSOL radial profiles for various time slices, taken on outboard […]

SOL radial profiles for various time slices, taken on outboard equatorial mid-plane

Coordinate

1

profiles_1d(itime)/time

profiles_1d(itime)/gridstructureRadial grid

Radial grid

profiles_1d(itime)/grid/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate = sqrt((psi(rho)-psi(magnetic_axis) […]

Normalized poloidal flux coordinate = sqrt((psi(rho)-psi(magnetic_axis) / (psi(LCFS)-psi(magnetic_axis)))

Coordinate

1

1...N

profiles_1d(itime)/grid/psi(:)WbFLT_1DPoloidal magnetic flux. […]

Poloidal magnetic flux. Integral of magnetic field passing through a contour defined by the intersection of a flux surface passing through the point of interest and a Z=constant plane. If the integration surface is flat, the surface normal vector is in the increasing vertical coordinate direction, Z, namely upwards.

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/grid/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate. […]

Normalized toroidal flux coordinate. The normalizing value for rho_tor_norm, is the toroidal flux coordinate at the equilibrium boundary (LCFS or 99.x % of the LCFS in case of a fixed boundary equilibium calculation, see time_slice/boundary/b_flux_pol_norm in the equilibrium IDS)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/grid/rho_tor(:)mFLT_1DToroidal flux coordinate. […]

Toroidal flux coordinate. rho_tor = sqrt(b_flux_tor/(pi*b0)) ~ sqrt(pi*r^2*b0/(pi*b0)) ~ r [m]. The toroidal field used in its definition is indicated under vacuum_toroidal_field/b0

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/grid/volume(:)m^3FLT_1DVolume enclosed inside the magnetic surface

Volume enclosed inside the magnetic surface

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/grid/area(:)m^2FLT_1DCross-sectional area of the flux surface

Cross-sectional area of the flux surface

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/grid/psi_magnetic_axisWbFLT_0DValue of the poloidal magnetic flux at the magnetic axis (useful […]

Value of the poloidal magnetic flux at the magnetic axis (useful to normalize the psi array values when the radial grid doesn’t go from the magnetic axis to the plasma boundary)

profiles_1d(itime)/grid/psi_boundaryWbFLT_0DValue of the poloidal magnetic flux at the plasma boundary (useful […]

Value of the poloidal magnetic flux at the plasma boundary (useful to normalize the psi array values when the radial grid doesn’t go from the magnetic axis to the plasma boundary)

profiles_1d(itime)/electronsstructureQuantities related to the electrons

Quantities related to the electrons

profiles_1d(itime)/electrons/temperature(:)eVFLT_1DTemperature

Temperature

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/temperature_validityINT_0DIndicator of the validity of the temperature profile. […]

Indicator of the validity of the temperature profile. 0: valid from automated processing, 1: valid and certified by the RO; - 1 means problem identified in the data processing (request verification by the RO), -2: invalid data, should not be used

profiles_1d(itime)/electrons/temperature_fiteVstructureInformation on the fit used to obtain the temperature profile

Information on the fit used to obtain the temperature profile

profiles_1d(itime)/electrons/temperature_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/electrons/temperature_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/electrons/temperature_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/electrons/temperature_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/electrons/temperature_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/electrons/temperature_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/electrons/temperature_fit/measured

profiles_1d(itime)/electrons/temperature_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/electrons/density(:)m^-3FLT_1DDensity (thermal+non-thermal)

Density (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/density_validityINT_0DIndicator of the validity of the density profile. […]

Indicator of the validity of the density profile. 0: valid from automated processing, 1: valid and certified by the RO; - 1 means problem identified in the data processing (request verification by the RO), -2: invalid data, should not be used

profiles_1d(itime)/electrons/density_fitm^-3structureInformation on the fit used to obtain the density profile

Information on the fit used to obtain the density profile

profiles_1d(itime)/electrons/density_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/electrons/density_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/electrons/density_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/electrons/density_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/electrons/density_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/electrons/density_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/electrons/density_fit/measured

profiles_1d(itime)/electrons/density_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/electrons/density_thermal(:)m^-3FLT_1DDensity of thermal particles

Density of thermal particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/density_fast(:)m^-3FLT_1DDensity of fast (non-thermal) particles

Density of fast (non-thermal) particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/pressure(:)PaFLT_1DPressure (thermal+non-thermal)

Pressure (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/pressure_thermal(:)PaFLT_1DPressure (thermal) associated with random motion ~average((v-average(v))^2)

Pressure (thermal) associated with random motion ~average((v-average(v))^2)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/pressure_fast_perpendicular(:)PaFLT_1DFast (non-thermal) perpendicular pressure

Fast (non-thermal) perpendicular pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/pressure_fast_parallel(:)PaFLT_1DFast (non-thermal) parallel pressure

Fast (non-thermal) parallel pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/electrons/collisionality_norm(:)1FLT_1DCollisionality normalized to the bounce frequency

Collisionality normalized to the bounce frequency

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)AoSQuantities related to the different ion species, in the sense […]

Quantities related to the different ion species, in the sense of isonuclear or isomolecular sequences. Ionization states (and other types of states) must be differentiated at the state level below

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/element(i2)AoSList of elements forming the atom or molecule

List of elements forming the atom or molecule

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/element(i2)/auFLT_0DMass of atom

Mass of atom

profiles_1d(itime)/ion(i1)/element(i2)/z_neINT_0DNuclear charge

Nuclear charge

Changed in version 4.0.0: Type changed from FLT_0D

profiles_1d(itime)/ion(i1)/element(i2)/atoms_nINT_0DNumber of atoms of this element in the molecule

Number of atoms of this element in the molecule

profiles_1d(itime)/ion(i1)/z_ioneFLT_0DIon charge (of the dominant ionization state; lumped ions are […]

Ion charge (of the dominant ionization state; lumped ions are allowed), volume averaged over plasma radius

profiles_1d(itime)/ion(i1)/nameSTR_0DString identifying ion (e.g. […]

String identifying ion (e.g. H, D, T, He, C, D2, …)

Changed in version 3.42.0: Renamed from label

profiles_1d(itime)/ion(i1)/neutral_indexINT_0DIndex of the corresponding neutral species in the ../../neutral […]

Index of the corresponding neutral species in the ../../neutral array

profiles_1d(itime)/ion(i1)/z_ion_1d(:)1FLT_1DAverage charge of the ion species (sum of states charge weighted […]

Average charge of the ion species (sum of states charge weighted by state density and divided by ion density)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/z_ion_square_1d(:)1FLT_1DAverage square charge of the ion species (sum of states square […]

Average square charge of the ion species (sum of states square charge weighted by state density and divided by ion density)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/temperature(:)eVFLT_1DTemperature (average over charge states when multiple charge […]

Temperature (average over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/temperature_validityINT_0DIndicator of the validity of the temperature profile. […]

Indicator of the validity of the temperature profile. 0: valid from automated processing, 1: valid and certified by the RO; - 1 means problem identified in the data processing (request verification by the RO), -2: invalid data, should not be used

profiles_1d(itime)/ion(i1)/temperature_fiteVstructureInformation on the fit used to obtain the temperature profile

Information on the fit used to obtain the temperature profile

profiles_1d(itime)/ion(i1)/temperature_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/temperature_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/ion(i1)/temperature_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/ion(i1)/temperature_fit/measured

profiles_1d(itime)/ion(i1)/temperature_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/ion(i1)/density(:)m^-3FLT_1DDensity (thermal+non-thermal) (sum over charge states when multiple […]

Density (thermal+non-thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/density_validityINT_0DIndicator of the validity of the density profile. […]

Indicator of the validity of the density profile. 0: valid from automated processing, 1: valid and certified by the RO; - 1 means problem identified in the data processing (request verification by the RO), -2: invalid data, should not be used

profiles_1d(itime)/ion(i1)/density_fitm^-3structureInformation on the fit used to obtain the density profile

Information on the fit used to obtain the density profile

profiles_1d(itime)/ion(i1)/density_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/density_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/ion(i1)/density_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/ion(i1)/density_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/ion(i1)/density_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/ion(i1)/density_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/ion(i1)/density_fit/measured

profiles_1d(itime)/ion(i1)/density_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/ion(i1)/density_thermal(:)m^-3FLT_1DDensity (thermal) (sum over charge states when multiple charge […]

Density (thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/density_fast(:)m^-3FLT_1DDensity of fast (non-thermal) particles (sum over charge states […]

Density of fast (non-thermal) particles (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/pressure(:)PaFLT_1DPressure (thermal+non-thermal) (sum over charge states when multiple […]

Pressure (thermal+non-thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/pressure_thermal(:)PaFLT_1DPressure (thermal) associated with random motion ~average((v-average(v))^2) […]

Pressure (thermal) associated with random motion ~average((v-average(v))^2) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/pressure_fast_perpendicular(:)PaFLT_1DFast (non-thermal) perpendicular pressure (sum over charge states […]

Fast (non-thermal) perpendicular pressure (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/pressure_fast_parallel(:)PaFLT_1DFast (non-thermal) parallel pressure (sum over charge states […]

Fast (non-thermal) parallel pressure (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/rotation_frequency_tor(:)rad.s^-1FLT_1DToroidal rotation frequency (i.e. […]

Toroidal rotation frequency (i.e. toroidal velocity divided by the major radius at which the toroidal velocity is taken) (average over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/velocitym.s^-1structureVelocity (average over charge states when multiple charge states […]

Velocity (average over charge states when multiple charge states are considered) at the position of maximum major radius on every flux surface

profiles_1d(itime)/ion(i1)/velocity/radial(:)m.s^-1FLT_1DRadial component

Radial component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/velocity/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component

Diamagnetic component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/velocity/parallel(:)m.s^-1FLT_1DParallel component

Parallel component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/velocity/poloidal(:)m.s^-1FLT_1DPoloidal component

Poloidal component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/velocity/toroidal(:)m.s^-1FLT_1DToroidal component

Toroidal component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/multiple_states_flagINT_0DMultiple states calculation flag : 0-Only the ‘ion’ level is […]

Multiple states calculation flag : 0-Only the ‘ion’ level is considered and the ‘state’ array of structure is empty; 1-Ion states are considered and are described in the ‘state’ array of structure

profiles_1d(itime)/ion(i1)/state(i2)AoSQuantities related to the different states of the species (ionization, […]

Quantities related to the different states of the species (ionization, energy, excitation, …)

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/state(i2)/z_mineFLT_0DMinimum Z of the charge state bundle

Minimum Z of the charge state bundle

profiles_1d(itime)/ion(i1)/state(i2)/z_maxeFLT_0DMaximum Z of the charge state bundle (equal to z_min if no bundle)

Maximum Z of the charge state bundle (equal to z_min if no bundle)

profiles_1d(itime)/ion(i1)/state(i2)/z_averageeFLT_0DAverage Z of the charge state bundle, volume averaged over the […]

Average Z of the charge state bundle, volume averaged over the plasma radius (equal to z_min if no bundle), = sum (Z*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle.

profiles_1d(itime)/ion(i1)/state(i2)/z_square_averageeFLT_0DAverage Z square of the charge state bundle, volume averaged […]

Average Z square of the charge state bundle, volume averaged over the plasma radius (equal to z_min squared if no bundle), = sum (Z^2*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle.

profiles_1d(itime)/ion(i1)/state(i2)/z_average_1d(:)1FLT_1DAverage charge profile of the charge state bundle (equal to z_min […]

Average charge profile of the charge state bundle (equal to z_min if no bundle), = sum (Z*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle.

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/z_average_square_1d(:)1FLT_1DAverage square charge profile of the charge state bundle (equal […]

Average square charge profile of the charge state bundle (equal to z_min squared if no bundle), = sum (Z^2*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle.

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/ionization_potentialeVFLT_0DCumulative and average ionization potential to reach a given […]

Cumulative and average ionization potential to reach a given bundle. Defined as sum (x_z* (sum of Epot from z’=0 to z-1)), where Epot is the ionization potential of ion Xz_+, and x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle.

Changed in version 4.0.0: Renamed from ionisation_potential

profiles_1d(itime)/ion(i1)/state(i2)/nameSTR_0DString identifying state (e.g. […]

String identifying state (e.g. C+, C+2 , C+3, C+4, C+5, C+6, …)

Changed in version 3.42.0: Renamed from label

profiles_1d(itime)/ion(i1)/state(i2)/electron_configurationSTR_0DConfiguration of atomic orbitals of this state, e.g. […]

Configuration of atomic orbitals of this state, e.g. 1s2-2s1

profiles_1d(itime)/ion(i1)/state(i2)/vibrational_leveleFLT_0DVibrational level (can be bundled)

Vibrational level (can be bundled)

profiles_1d(itime)/ion(i1)/state(i2)/vibrational_modeSTR_0DVibrational mode of this state, e.g. […]

Vibrational mode of this state, e.g. “A_g”. Need to define, or adopt a standard nomenclature.

profiles_1d(itime)/ion(i1)/state(i2)/rotation_frequency_tor(:)rad.s^-1FLT_1DToroidal rotation frequency (i.e. […]

Toroidal rotation frequency (i.e. toroidal velocity divided by the major radius at which the toroidal velocity is taken)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/temperature(:)eVFLT_1DTemperature

Temperature

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/density(:)m^-3FLT_1DDensity (thermal+non-thermal)

Density (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/density_fitm^-3structureInformation on the fit used to obtain the density profile

Information on the fit used to obtain the density profile

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/measured

profiles_1d(itime)/ion(i1)/state(i2)/density_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/ion(i1)/state(i2)/density_thermal(:)m^-3FLT_1DDensity of thermal particles

Density of thermal particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/density_fast(:)m^-3FLT_1DDensity of fast (non-thermal) particles

Density of fast (non-thermal) particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/pressure(:)PaFLT_1DPressure (thermal+non-thermal)

Pressure (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/pressure_thermal(:)PaFLT_1DPressure (thermal) associated with random motion ~average((v-average(v))^2)

Pressure (thermal) associated with random motion ~average((v-average(v))^2)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(:)PaFLT_1DFast (non-thermal) perpendicular pressure

Fast (non-thermal) perpendicular pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/ion(i1)/state(i2)/pressure_fast_parallel(:)PaFLT_1DFast (non-thermal) parallel pressure

Fast (non-thermal) parallel pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)AoSQuantities related to the different neutral species

Quantities related to the different neutral species

Coordinate

1

1...N

profiles_1d(itime)/neutral(i1)/element(i2)AoSList of elements forming the atom or molecule

List of elements forming the atom or molecule

Coordinate

1

1...N

profiles_1d(itime)/neutral(i1)/element(i2)/auFLT_0DMass of atom

Mass of atom

profiles_1d(itime)/neutral(i1)/element(i2)/z_neINT_0DNuclear charge

Nuclear charge

Changed in version 4.0.0: Type changed from FLT_0D

profiles_1d(itime)/neutral(i1)/element(i2)/atoms_nINT_0DNumber of atoms of this element in the molecule

Number of atoms of this element in the molecule

profiles_1d(itime)/neutral(i1)/nameSTR_0DString identifying the species (e.g. […]

String identifying the species (e.g. H, D, T, He, C, D2, DT, CD4, …)

Changed in version 3.42.0: Renamed from label

profiles_1d(itime)/neutral(i1)/ion_indexINT_0DIndex of the corresponding ion species in the ../../ion array

Index of the corresponding ion species in the ../../ion array

profiles_1d(itime)/neutral(i1)/temperature(:)eVFLT_1DTemperature (average over charge states when multiple charge […]

Temperature (average over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/density(:)m^-3FLT_1DDensity (thermal+non-thermal) (sum over charge states when multiple […]

Density (thermal+non-thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/density_thermal(:)m^-3FLT_1DDensity (thermal) (sum over charge states when multiple charge […]

Density (thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/density_fast(:)m^-3FLT_1DDensity of fast (non-thermal) particles (sum over charge states […]

Density of fast (non-thermal) particles (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/pressure(:)PaFLT_1DPressure (thermal+non-thermal) (sum over charge states when multiple […]

Pressure (thermal+non-thermal) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/pressure_thermal(:)PaFLT_1DPressure (thermal) associated with random motion ~average((v-average(v))^2) […]

Pressure (thermal) associated with random motion ~average((v-average(v))^2) (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/pressure_fast_perpendicular(:)PaFLT_1DFast (non-thermal) perpendicular pressure (sum over charge states […]

Fast (non-thermal) perpendicular pressure (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/pressure_fast_parallel(:)PaFLT_1DFast (non-thermal) parallel pressure (sum over charge states […]

Fast (non-thermal) parallel pressure (sum over charge states when multiple charge states are considered)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/multiple_states_flagINT_0DMultiple states calculation flag : 0-Only one state is considered; […]

Multiple states calculation flag : 0-Only one state is considered; 1-Multiple states are considered and are described in the state structure

profiles_1d(itime)/neutral(i1)/state(i2)AoSQuantities related to the different states of the species (energy, […]

Quantities related to the different states of the species (energy, excitation, …)

Coordinate

1

1...N

profiles_1d(itime)/neutral(i1)/state(i2)/nameSTR_0DString identifying state

String identifying state

Changed in version 3.42.0: Renamed from label

profiles_1d(itime)/neutral(i1)/state(i2)/electron_configurationSTR_0DConfiguration of atomic orbitals of this state, e.g. […]

Configuration of atomic orbitals of this state, e.g. 1s2-2s1

profiles_1d(itime)/neutral(i1)/state(i2)/vibrational_leveleFLT_0DVibrational level (can be bundled)

Vibrational level (can be bundled)

profiles_1d(itime)/neutral(i1)/state(i2)/vibrational_modeSTR_0DVibrational mode of this state, e.g. […]

Vibrational mode of this state, e.g. “A_g”. Need to define, or adopt a standard nomenclature.

profiles_1d(itime)/neutral(i1)/state(i2)/neutral_typestructureNeutral type (if the considered state is a neutral), in terms […]

Neutral type (if the considered state is a neutral), in terms of energy. ID =1: cold; 2: thermal; 3: fast; 4: NBI

This is an identifier. See neutrals_identifier for the available options.

profiles_1d(itime)/neutral(i1)/state(i2)/neutral_type/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/neutral(i1)/state(i2)/neutral_type/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/neutral(i1)/state(i2)/neutral_type/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/neutral(i1)/state(i2)/temperature(:)eVFLT_1DTemperature

Temperature

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/density(:)m^-3FLT_1DDensity (thermal+non-thermal)

Density (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/density_thermal(:)m^-3FLT_1DDensity of thermal particles

Density of thermal particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/density_fast(:)m^-3FLT_1DDensity of fast (non-thermal) particles

Density of fast (non-thermal) particles

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/pressure(:)PaFLT_1DPressure (thermal+non-thermal)

Pressure (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/pressure_thermal(:)PaFLT_1DPressure (thermal) associated with random motion ~average((v-average(v))^2)

Pressure (thermal) associated with random motion ~average((v-average(v))^2)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(:)PaFLT_1DFast (non-thermal) perpendicular pressure

Fast (non-thermal) perpendicular pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(:)PaFLT_1DFast (non-thermal) parallel pressure

Fast (non-thermal) parallel pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/t_i_average(:)eVFLT_1DIon temperature (averaged on charge states and ion species)

Ion temperature (averaged on charge states and ion species)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/t_i_average_fiteVstructureInformation on the fit used to obtain the t_i_average profile

Information on the fit used to obtain the t_i_average profile

profiles_1d(itime)/t_i_average_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/t_i_average_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/t_i_average_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/t_i_average_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/t_i_average_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/t_i_average_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/t_i_average_fit/measured

profiles_1d(itime)/t_i_average_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/n_i_total_over_n_e(:)1FLT_1DRatio of total ion density (sum over species and charge states) […]

Ratio of total ion density (sum over species and charge states) over electron density. (thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/n_i_thermal_total(:)m^-3FLT_1DTotal ion thermal density (sum over species and charge states)

Total ion thermal density (sum over species and charge states)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/momentum_phi(:)kg.m^-1.s^-1FLT_1DTotal plasma toroidal momentum, summed over ion species and electrons […]

Total plasma toroidal momentum, summed over ion species and electrons weighted by their density and major radius, i.e. sum_over_species(n*R*m*Vphi)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

Changed in version 3.42.0: Renamed from momentum_tor

profiles_1d(itime)/zeff(:)1FLT_1DEffective charge

Effective charge

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/zeff_fit1structureInformation on the fit used to obtain the zeff profile

Information on the fit used to obtain the zeff profile

profiles_1d(itime)/zeff_fit/measured(:)mixedFLT_1DMeasured values. […]

Measured values. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

1...N

profiles_1d(itime)/zeff_fit/source(:)STR_1DPath to the source data for each measurement in the IMAS data […]

Path to the source data for each measurement in the IMAS data dictionary, e.g. ece/channel(i)/t_e for the electron temperature on the i-th channel in the ECE IDS

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/time_measurement(:)sFLT_1DExact time slices used from the time array of the measurement […]

Exact time slices used from the time array of the measurement source data. If the time slice does not exist in the time array of the source data, it means linear interpolation has been used

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/time_measurement_slice_methodstructureMethod used to slice the data : index = 0 means using exact time […]

Method used to slice the data : index = 0 means using exact time slice of the measurement, 1 means linear interpolation, …

profiles_1d(itime)/zeff_fit/time_measurement_slice_method/nameSTR_0DShort string identifier

Short string identifier

profiles_1d(itime)/zeff_fit/time_measurement_slice_method/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

profiles_1d(itime)/zeff_fit/time_measurement_slice_method/descriptionSTR_0DVerbose description

Verbose description

profiles_1d(itime)/zeff_fit/time_measurement_width(:)sFLT_1DIn case the measurements are averaged over a time interval, this […]

In case the measurements are averaged over a time interval, this node is the full width of this time interval (empty otherwise). In case the slicing/averaging method doesn’t use a hard time interval cutoff, this width is the characteristic time span of the slicing/averaging method. By convention, the time interval starts at time_measurement-time_width and ends at time_measurement.

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/local(:)INT_1DInteger flag : 1 means local measurement, 0 means line-integrated […]

Integer flag : 1 means local measurement, 0 means line-integrated measurement

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/rho_tor_norm(:)1FLT_1DNormalized toroidal flux coordinate of each measurement (local […]

Normalized toroidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/rho_pol_norm(:)1FLT_1DNormalized poloidal flux coordinate of each measurement (local […]

Normalized poloidal flux coordinate of each measurement (local value for a local measurement, minimum value reached by the line of sight for a line measurement)

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/weight(:)1FLT_1DWeight given to each measured value

Weight given to each measured value

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/reconstructed(:)mixedFLT_1DValue reconstructed from the fit. […]

Value reconstructed from the fit. Units are: as_parent for a local measurement, as_parent.m for a line integrated measurement.

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/chi_squared(:)1FLT_1DSquared error normalized by the weighted standard deviation considered […]

Squared error normalized by the weighted standard deviation considered in the minimization process : chi_squared = weight^2 *(reconstructed - measured)^2 / sigma^2, where sigma is the standard deviation of the measurement error

Coordinate

1

profiles_1d(itime)/zeff_fit/measured

profiles_1d(itime)/zeff_fit/parametersSTR_0DList of the fit specific parameters in XML format

List of the fit specific parameters in XML format

profiles_1d(itime)/pressure_ion_total(:)PaFLT_1DTotal (sum over ion species) thermal ion pressure

Total (sum over ion species) thermal ion pressure

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/pressure_thermal(:)PaFLT_1DThermal pressure (electrons+ions)

Thermal pressure (electrons+ions)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/pressure_perpendicular(:)PaFLT_1DTotal perpendicular pressure (electrons+ions, thermal+non-thermal)

Total perpendicular pressure (electrons+ions, thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/pressure_parallel(:)PaFLT_1DTotal parallel pressure (electrons+ions, thermal+non-thermal)

Total parallel pressure (electrons+ions, thermal+non-thermal)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/j_total(:)A.m^-2FLT_1DTotal parallel current density = average(jtot.B) / B0, where […]

Total parallel current density = average(jtot.B) / B0, where B0 = edge_profiles/Vacuum_Toroidal_Field/ B0

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/current_parallel_inside(:)AFLT_1DParallel current driven inside the flux surface. […]

Parallel current driven inside the flux surface. Cumulative surface integral of j_total

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/j_phi(:)A.m^-2FLT_1DTotal toroidal current density = average(J_phi/R) / average(1/R)

Total toroidal current density = average(J_phi/R) / average(1/R)

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

Changed in version 3.42.0: Renamed from j_tor

profiles_1d(itime)/j_ohmic(:)A.m^-2FLT_1DOhmic parallel current density = average(J_Ohmic.B) / B0, where […]

Ohmic parallel current density = average(J_Ohmic.B) / B0, where B0 = edge_profiles/Vacuum_Toroidal_Field/ B0

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/j_non_inductive(:)A.m^-2FLT_1DNon-inductive (includes bootstrap) parallel current density = […]

Non-inductive (includes bootstrap) parallel current density = average(jni.B) / B0, where B0 = edge_profiles/Vacuum_Toroidal_Field/ B0

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/j_bootstrap(:)A.m^-2FLT_1DBootstrap current density = average(J_Bootstrap.B) / B0, where […]

Bootstrap current density = average(J_Bootstrap.B) / B0, where B0 = edge_profiles/Vacuum_Toroidal_Field/ B0

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/conductivity_parallel(:)ohm^-1.m^-1FLT_1DParallel conductivity

Parallel conductivity

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/e_fieldV.m^-1structureElectric field, averaged on the magnetic surface. […]

Electric field, averaged on the magnetic surface. E.g for the parallel component, average(E.B) / B0, using edge_profiles/vacuum_toroidal_field/b0

profiles_1d(itime)/e_field/radial(:)V.m^-1FLT_1DRadial component

Radial component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/e_field/diamagnetic(:)V.m^-1FLT_1DDiamagnetic component

Diamagnetic component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/e_field/parallel(:)V.m^-1FLT_1DParallel component

Parallel component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/e_field/poloidal(:)V.m^-1FLT_1DPoloidal component

Poloidal component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/e_field/toroidal(:)V.m^-1FLT_1DToroidal component

Toroidal component

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/phi_potential(:)VFLT_1DElectrostatic potential, averaged on the magnetic flux surface

Electrostatic potential, averaged on the magnetic flux surface

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/rotation_frequency_tor_sonic(:)s^-1FLT_1DDerivative of the flux surface averaged electrostatic potential […]

Derivative of the flux surface averaged electrostatic potential with respect to the poloidal flux, multiplied by -1. This quantity is the toroidal angular rotation frequency due to the ExB drift, introduced in formula (43) of Hinton and Wong, Physics of Fluids 3082 (1985), also referred to as sonic flow in regimes in which the toroidal velocity is dominant over the poloidal velocity

Click here for further documentation.

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/q(:)1FLT_1DSafety factor

Safety factor

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/magnetic_shear(:)1FLT_1DMagnetic shear, defined as rho_tor/q . […]

Magnetic shear, defined as rho_tor/q . dq/drho_tor

Coordinate

1

profiles_1d(itime)/grid/rho_pol_norm

profiles_1d(itime)/timesFLT_0DTime

Time

grid_ggd(itime)AoSGrid (using the Generic Grid Description), for various time slices. […]

Grid (using the Generic Grid Description), for various time slices. The timebase of this array of structure must be a subset of the ggd timebase

Coordinate

1

grid_ggd(itime)/time

grid_ggd(itime)/identifierstructureGrid identifier

Grid identifier

This is an identifier. See ggd_identifier for the available options.

grid_ggd(itime)/identifier/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/identifier/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/identifier/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/pathSTR_0DPath of the grid, including the IDS name, in case of implicit […]

Path of the grid, including the IDS name, in case of implicit reference to a grid_ggd node described in another IDS. To be filled only if the grid is not described explicitly in this grid_ggd structure. Example syntax: #wall:2/description_ggd(1)/grid_ggd, means that the grid is located in the wall IDS, occurrence 2, with relative path description_ggd(1)/grid_ggd, using Fortran index convention (here : first index of the array)

Click here for further documentation.

grid_ggd(itime)/space(i1)AoSSet of grid spaces

Set of grid spaces

Click here for further documentation (or contact imas@iter.org if you can’t access this page).

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/identifierstructureSpace identifier

Space identifier

This is an identifier. See ggd_space_identifier for the available options.

grid_ggd(itime)/space(i1)/identifier/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/space(i1)/identifier/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/space(i1)/identifier/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/space(i1)/geometry_typestructureType of space geometry (0: standard, 1:Fourier, >1: Fourier with […]

Type of space geometry (0: standard, 1:Fourier, >1: Fourier with periodicity)

grid_ggd(itime)/space(i1)/geometry_type/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/space(i1)/geometry_type/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/space(i1)/geometry_type/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/space(i1)/coordinates_type(i2)AoSType of coordinates describing the physical space, for every […]

Type of coordinates describing the physical space, for every coordinate of the space. The size of this node therefore defines the dimension of the space.

This is an identifier. See coordinate_identifier for the available options.

Coordinate

1

1...N

Changed in version 4.0.0: Type changed from INT_1D

grid_ggd(itime)/space(i1)/coordinates_type(i2)/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/space(i1)/coordinates_type(i2)/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/space(i1)/coordinates_type(i2)/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)AoSDefinition of the space objects for every dimension (from one […]

Definition of the space objects for every dimension (from one to the dimension of the highest-dimensional objects). The index correspond to 1=nodes, 2=edges, 3=faces, 4=cells/volumes, …. For every index, a collection of objects of that dimension is described.

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)AoSSet of objects for a given dimension

Set of objects for a given dimension

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/boundary(i4)AoSSet of (n-1)-dimensional objects defining the boundary of this […]

Set of (n-1)-dimensional objects defining the boundary of this n-dimensional object

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/boundary(i4)/indexINT_0DIndex of this (n-1)-dimensional boundary object

Index of this (n-1)-dimensional boundary object

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/boundary(i4)/neighbours(:)INT_1DList of indices of the n-dimensional objects adjacent to the […]

List of indices of the n-dimensional objects adjacent to the given n-dimensional object. An object can possibly have multiple neighbours on a boundary

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/geometry(:)mixedFLT_1DGeometry data associated with the object, its detailed content […]

Geometry data associated with the object, its detailed content is defined by ../../geometry_content. Its dimension depends on the type of object, geometry and coordinate considered.

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/nodes(:)INT_1DList of nodes forming this object (indices to objects_per_dimension(1)%object(:) […]

List of nodes forming this object (indices to objects_per_dimension(1)%object(:) in Fortran notation)

Coordinate

1

1...N

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/measurem^dimensionFLT_0DMeasure of the space object, i.e. […]

Measure of the space object, i.e. physical size (length for 1d, area for 2d, volume for 3d objects,…)

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/object(i3)/geometry_2d(:,:)mixedFLT_2D2D geometry data associated with the object. […]

2D geometry data associated with the object. Its dimension depends on the type of object, geometry and coordinate considered. Typically, the first dimension represents the object coordinates, while the second dimension would represent the values of the various degrees of freedom of the finite element attached to the object.

Coordinate

1

1...N

2

1...N

New in version >3.35.0.

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/geometry_contentstructureContent of the ../object/geometry node for this dimension

Content of the ../object/geometry node for this dimension

This is an identifier. See ggd_geometry_content_identifier for the available options.

New in version >3.33.0.

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/geometry_content/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/geometry_content/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/space(i1)/objects_per_dimension(i2)/geometry_content/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/grid_subset(i1)AoSGrid subsets

Grid subsets

Coordinate

1

1...N

grid_ggd(itime)/grid_subset(i1)/identifierstructureGrid subset identifier

Grid subset identifier

Click here for further documentation.

This is an identifier. See ggd_subset_identifier for the available options.

grid_ggd(itime)/grid_subset(i1)/identifier/nameSTR_0DShort string identifier

Short string identifier

grid_ggd(itime)/grid_subset(i1)/identifier/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

grid_ggd(itime)/grid_subset(i1)/identifier/descriptionSTR_0DVerbose description

Verbose description

grid_ggd(itime)/grid_subset(i1)/dimensionINT_0DSpace dimension of the grid subset elements, using the convention […]

Space dimension of the grid subset elements, using the convention 1=nodes, 2=edges, 3=faces, 4=cells/volumes

grid_ggd(itime)/grid_subset(i1)/element(i2)AoSSet of elements defining the grid subset. […]

Set of elements defining the grid subset. An element is defined by a combination of objects from potentially all spaces

Coordinate

1

1...N

grid_ggd(itime)/grid_subset(i1)/element(i2)/object(i3)AoSSet of objects defining the element

Set of objects defining the element

Coordinate

1

1...N

grid_ggd(itime)/grid_subset(i1)/element(i2)/object(i3)/spaceINT_0DIndex of the space from which that object is taken

Index of the space from which that object is taken

grid_ggd(itime)/grid_subset(i1)/element(i2)/object(i3)/dimensionINT_0DDimension of the object - using the convention 1=nodes, 2=edges, […]

Dimension of the object - using the convention 1=nodes, 2=edges, 3=faces, 4=cells/volumes

grid_ggd(itime)/grid_subset(i1)/element(i2)/object(i3)/indexINT_0DObject index

Object index

grid_ggd(itime)/grid_subset(i1)/base(i2)AoSSet of bases for the grid subset. […]

Set of bases for the grid subset. For each base, the structure describes the projection of the base vectors on the canonical frame of the grid.

Coordinate

1

1...N

grid_ggd(itime)/grid_subset(i1)/base(i2)/jacobian(:)mixedFLT_1DMetric Jacobian

Metric Jacobian

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

grid_ggd(itime)/grid_subset(i1)/base(i2)/tensor_covariant(:,:,:)mixedFLT_3DCovariant metric tensor, given on each element of the subgrid […]

Covariant metric tensor, given on each element of the subgrid (first dimension)

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

2

1...N

3

1...N

grid_ggd(itime)/grid_subset(i1)/base(i2)/tensor_contravariant(:,:,:)mixedFLT_3DContravariant metric tensor, given on each element of the subgrid […]

Contravariant metric tensor, given on each element of the subgrid (first dimension)

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

2

1...N (same as grid_ggd(itime)/grid_subset(i1)/base(i2)/tensor_covariant)

3

1...N (same as grid_ggd(itime)/grid_subset(i1)/base(i2)/tensor_covariant)

grid_ggd(itime)/grid_subset(i1)/metricstructureMetric of the canonical frame onto Cartesian coordinates

Metric of the canonical frame onto Cartesian coordinates

grid_ggd(itime)/grid_subset(i1)/metric/jacobian(:)mixedFLT_1DMetric Jacobian

Metric Jacobian

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

grid_ggd(itime)/grid_subset(i1)/metric/tensor_covariant(:,:,:)mixedFLT_3DCovariant metric tensor, given on each element of the subgrid […]

Covariant metric tensor, given on each element of the subgrid (first dimension)

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

2

1...N

3

1...N

grid_ggd(itime)/grid_subset(i1)/metric/tensor_contravariant(:,:,:)mixedFLT_3DContravariant metric tensor, given on each element of the subgrid […]

Contravariant metric tensor, given on each element of the subgrid (first dimension)

Coordinate

1

grid_ggd(itime)/grid_subset(i1)/element

2

1...N (same as grid_ggd(itime)/grid_subset(i1)/metric/tensor_covariant)

3

1...N (same as grid_ggd(itime)/grid_subset(i1)/metric/tensor_covariant)

grid_ggd(itime)/timesFLT_0DTime

Time

ggd(itime)AoSEdge plasma quantities represented using the general grid description, […]

Edge plasma quantities represented using the general grid description, for various time slices. The timebase of this array of structure must be a subset of the ggd_fast timebase (only if the ggd_fast array of structure is used)

Coordinate

1

ggd(itime)/time

ggd(itime)/electronsstructureQuantities related to the electrons

Quantities related to the electrons

ggd(itime)/electrons/temperature(i1)eVAoSTemperature, given on various grid subsets

Temperature, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/temperature(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/temperature(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/temperature(i1)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/temperature(i1)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/temperature(i1)/values

2

1...N

ggd(itime)/electrons/density(i1)m^-3AoSDensity (thermal+non-thermal), given on various grid subsets

Density (thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/density(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/density(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/density(i1)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/density(i1)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/density(i1)/values

2

1...N

ggd(itime)/electrons/density_fast(i1)m^-3AoSDensity of fast (non-thermal) particles, given on various grid […]

Density of fast (non-thermal) particles, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/density_fast(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/density_fast(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/density_fast(i1)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/density_fast(i1)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/density_fast(i1)/values

2

1...N

ggd(itime)/electrons/pressure(i1)PaAoSPressure, given on various grid subsets

Pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/pressure(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/pressure(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/pressure(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/pressure(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/pressure(i1)/values

2

1...N

ggd(itime)/electrons/pressure_fast_perpendicular(i1)PaAoSFast (non-thermal) perpendicular pressure, given on various grid […]

Fast (non-thermal) perpendicular pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/pressure_fast_perpendicular(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/pressure_fast_perpendicular(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/pressure_fast_perpendicular(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/pressure_fast_perpendicular(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/pressure_fast_perpendicular(i1)/values

2

1...N

ggd(itime)/electrons/pressure_fast_parallel(i1)PaAoSFast (non-thermal) parallel pressure, given on various grid subsets

Fast (non-thermal) parallel pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/pressure_fast_parallel(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/pressure_fast_parallel(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/pressure_fast_parallel(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/pressure_fast_parallel(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/pressure_fast_parallel(i1)/values

2

1...N

ggd(itime)/electrons/velocity(i1)m.s^-1AoSVelocity, given on various grid subsets

Velocity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/velocity(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/velocity(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/velocity(i1)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/velocity(i1)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/electrons/velocity(i1)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/velocity(i1)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/electrons/velocity(i1)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/velocity(i1)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/electrons/velocity(i1)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/velocity(i1)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/electrons/velocity(i1)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/electrons/velocity(i1)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/electrons/velocity(i1)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/electrons/velocity(i1)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/electrons/velocity(i1)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/electrons/velocity(i1)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/electrons/distribution_function(i1)mixedAoSDistribution function, given on various grid subsets

Distribution function, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/electrons/distribution_function(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/electrons/distribution_function(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/electrons/distribution_function(i1)/values(:)mixedFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/electrons/distribution_function(i1)/coefficients(:,:)mixedFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/electrons/distribution_function(i1)/values

2

1...N

ggd(itime)/ion(i1)AoSQuantities related to the different ion species

Quantities related to the different ion species

Coordinate

1

1...N

ggd(itime)/ion(i1)/element(i2)AoSList of elements forming the atom or molecule

List of elements forming the atom or molecule

Coordinate

1

1...N

ggd(itime)/ion(i1)/element(i2)/auFLT_0DMass of atom

Mass of atom

ggd(itime)/ion(i1)/element(i2)/z_neINT_0DNuclear charge

Nuclear charge

Changed in version 4.0.0: Type changed from FLT_0D

ggd(itime)/ion(i1)/element(i2)/atoms_nINT_0DNumber of atoms of this element in the molecule

Number of atoms of this element in the molecule

ggd(itime)/ion(i1)/z_ioneFLT_0DIon charge (of the dominant ionization state; lumped ions are […]

Ion charge (of the dominant ionization state; lumped ions are allowed).

ggd(itime)/ion(i1)/nameSTR_0DString identifying the species (e.g. […]

String identifying the species (e.g. H+, D+, T+, He+2, C+, D2, DT, CD4, …)

Changed in version 3.42.0: Renamed from label

ggd(itime)/ion(i1)/neutral_indexINT_0DIndex of the corresponding neutral species in the ../../neutral […]

Index of the corresponding neutral species in the ../../neutral array

ggd(itime)/ion(i1)/temperature(i2)eVAoSTemperature (average over states when multiple states are considered), […]

Temperature (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/temperature(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/temperature(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/temperature(i2)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/temperature(i2)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/temperature(i2)/values

2

1...N

ggd(itime)/ion(i1)/density(i2)m^-3AoSDensity (thermal+non-thermal) (sum over states when multiple […]

Density (thermal+non-thermal) (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/density(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/density(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/density(i2)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/density(i2)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/density(i2)/values

2

1...N

ggd(itime)/ion(i1)/density_fast(i2)m^-3AoSDensity of fast (non-thermal) particles (sum over states when […]

Density of fast (non-thermal) particles (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/density_fast(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/density_fast(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/density_fast(i2)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/density_fast(i2)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/density_fast(i2)/values

2

1...N

ggd(itime)/ion(i1)/pressure(i2)PaAoSPressure (average over states when multiple states are considered), […]

Pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/pressure(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/pressure(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/pressure(i2)/values

2

1...N

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)PaAoSFast (non-thermal) perpendicular pressure (average over states […]

Fast (non-thermal) perpendicular pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/pressure_fast_perpendicular(i2)/values

2

1...N

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)PaAoSFast (non-thermal) parallel pressure (average over states when […]

Fast (non-thermal) parallel pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/pressure_fast_parallel(i2)/values

2

1...N

ggd(itime)/ion(i1)/velocity(i2)m.s^-1AoSVelocity (average over states when multiple states are considered), […]

Velocity (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/velocity(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/velocity(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/velocity(i2)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/velocity(i2)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/velocity(i2)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/velocity(i2)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/velocity(i2)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/velocity(i2)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/velocity(i2)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/velocity(i2)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/velocity(i2)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/velocity(i2)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/velocity(i2)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/ion(i1)/velocity(i2)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/ion(i1)/velocity(i2)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/velocity(i2)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/energy_density_kinetic(i2)J.m^-3AoSKinetic energy density (sum over states when multiple states […]

Kinetic energy density (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/energy_density_kinetic(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/energy_density_kinetic(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/energy_density_kinetic(i2)/values(:)J.m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/energy_density_kinetic(i2)/coefficients(:,:)J.m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/energy_density_kinetic(i2)/values

2

1...N

ggd(itime)/ion(i1)/multiple_states_flagINT_0DMultiple state calculation flag : 0-Only one state is considered; […]

Multiple state calculation flag : 0-Only one state is considered; 1-Multiple states are considered and are described in the state structure

ggd(itime)/ion(i1)/state(i2)AoSQuantities related to the different states of the species (ionization, […]

Quantities related to the different states of the species (ionization, energy, excitation, …)

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/z_mineFLT_0DMinimum Z of the state bundle (z_min = z_max = 0 for a neutral)

Minimum Z of the state bundle (z_min = z_max = 0 for a neutral)

ggd(itime)/ion(i1)/state(i2)/z_maxeFLT_0DMaximum Z of the state bundle (equal to z_min if no bundle)

Maximum Z of the state bundle (equal to z_min if no bundle)

ggd(itime)/ion(i1)/state(i2)/z_average(i3)eAoSAverage Z of the state bundle (equal to z_min if no bundle), […]

Average Z of the state bundle (equal to z_min if no bundle), = sum (Z*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/z_average(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/z_average(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/z_average(i3)/values(:)eFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/z_average(i3)/coefficients(:,:)eFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/z_average(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)eAoSAverage Z square of the state bundle (equal to z_min if no bundle), […]

Average Z square of the state bundle (equal to z_min if no bundle), = sum (Z^2*x_z) where x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)/values(:)eFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)/coefficients(:,:)eFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/z_square_average(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)eAoSCumulative and average ionization potential to reach a given […]

Cumulative and average ionization potential to reach a given bundle. Defined as sum (x_z* (sum of Epot from z’=0 to z-1)), where Epot is the ionization potential of ion Xz_+, and x_z is the relative concentration of a given charge state in the bundle, i.e. sum(x_z) = 1 over the bundle, given on various grid subsets

Coordinate

1

1...N

Changed in version 4.0.0: Renamed from ionisation_potential

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)/values(:)eFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)/coefficients(:,:)eFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/ionization_potential(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/nameSTR_0DString identifying state (e.g. […]

String identifying state (e.g. C+, C+2 , C+3, C+4, C+5, C+6, …)

Changed in version 3.42.0: Renamed from label

ggd(itime)/ion(i1)/state(i2)/electron_configurationSTR_0DConfiguration of atomic orbitals of this state, e.g. […]

Configuration of atomic orbitals of this state, e.g. 1s2-2s1

ggd(itime)/ion(i1)/state(i2)/vibrational_leveleFLT_0DVibrational level (can be bundled)

Vibrational level (can be bundled)

ggd(itime)/ion(i1)/state(i2)/vibrational_modeSTR_0DVibrational mode of this state, e.g. […]

Vibrational mode of this state, e.g. “A_g”. Need to define, or adopt a standard nomenclature.

ggd(itime)/ion(i1)/state(i2)/temperature(i3)eVAoSTemperature, given on various grid subsets

Temperature, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/temperature(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/temperature(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/temperature(i3)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/temperature(i3)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/temperature(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/density(i3)m^-3AoSDensity (thermal+non-thermal), given on various grid subsets

Density (thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/density(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/density(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/density(i3)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/density(i3)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/density(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)m^-3AoSDensity of fast (non-thermal) particles, given on various grid […]

Density of fast (non-thermal) particles, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/density_fast(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/pressure(i3)PaAoSPressure, given on various grid subsets

Pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/pressure(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/pressure(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/pressure(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)PaAoSFast (non-thermal) perpendicular pressure, given on various grid […]

Fast (non-thermal) perpendicular pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/pressure_fast_perpendicular(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)PaAoSFast (non-thermal) parallel pressure, given on various grid subsets

Fast (non-thermal) parallel pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/pressure_fast_parallel(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)m.s^-1AoSVelocity, given on various grid subsets

Velocity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)m.s^-1AoSVelocity due to the diamagnetic drift, given on various grid […]

Velocity due to the diamagnetic drift, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_diamagnetic(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)m.s^-1AoSVelocity due to the ExB drift, given on various grid subsets

Velocity due to the ExB drift, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/velocity_exb(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)J.m^-3AoSKinetic energy density, given on various grid subsets

Kinetic energy density, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)/values(:)J.m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)/coefficients(:,:)J.m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/energy_density_kinetic(i3)/values

2

1...N

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)mixedAoSDistribution function, given on various grid subsets

Distribution function, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)/values(:)mixedFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)/coefficients(:,:)mixedFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/ion(i1)/state(i2)/distribution_function(i3)/values

2

1...N

ggd(itime)/neutral(i1)AoSQuantities related to the different neutral species

Quantities related to the different neutral species

Coordinate

1

1...N

ggd(itime)/neutral(i1)/element(i2)AoSList of elements forming the atom or molecule

List of elements forming the atom or molecule

Coordinate

1

1...N

ggd(itime)/neutral(i1)/element(i2)/auFLT_0DMass of atom

Mass of atom

ggd(itime)/neutral(i1)/element(i2)/z_neINT_0DNuclear charge

Nuclear charge

Changed in version 4.0.0: Type changed from FLT_0D

ggd(itime)/neutral(i1)/element(i2)/atoms_nINT_0DNumber of atoms of this element in the molecule

Number of atoms of this element in the molecule

ggd(itime)/neutral(i1)/nameSTR_0DString identifying the species (e.g. […]

String identifying the species (e.g. H, D, T, He, C, D2, DT, CD4, …)

Changed in version 3.42.0: Renamed from label

ggd(itime)/neutral(i1)/ion_indexINT_0DIndex of the corresponding ion species in the ../../ion array

Index of the corresponding ion species in the ../../ion array

ggd(itime)/neutral(i1)/temperature(i2)eVAoSTemperature (average over states when multiple states are considered), […]

Temperature (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/temperature(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/temperature(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/temperature(i2)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/temperature(i2)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/temperature(i2)/values

2

1...N

ggd(itime)/neutral(i1)/density(i2)m^-3AoSDensity (thermal+non-thermal) (sum over states when multiple […]

Density (thermal+non-thermal) (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/density(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/density(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/density(i2)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/density(i2)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/density(i2)/values

2

1...N

ggd(itime)/neutral(i1)/density_fast(i2)m^-3AoSDensity of fast (non-thermal) particles (sum over states when […]

Density of fast (non-thermal) particles (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/density_fast(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/density_fast(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/density_fast(i2)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/density_fast(i2)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/density_fast(i2)/values

2

1...N

ggd(itime)/neutral(i1)/pressure(i2)PaAoSPressure (average over states when multiple states are considered), […]

Pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/pressure(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/pressure(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/pressure(i2)/values

2

1...N

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)PaAoSFast (non-thermal) perpendicular pressure (average over states […]

Fast (non-thermal) perpendicular pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/pressure_fast_perpendicular(i2)/values

2

1...N

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)PaAoSFast (non-thermal) parallel pressure (average over states when […]

Fast (non-thermal) parallel pressure (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/pressure_fast_parallel(i2)/values

2

1...N

ggd(itime)/neutral(i1)/velocity(i2)m.s^-1AoSVelocity (average over states when multiple states are considered), […]

Velocity (average over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/velocity(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/velocity(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/velocity(i2)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/velocity(i2)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/velocity(i2)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/velocity(i2)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/velocity(i2)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/velocity(i2)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/velocity(i2)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/velocity(i2)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/velocity(i2)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/velocity(i2)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/velocity(i2)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/neutral(i1)/velocity(i2)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/neutral(i1)/velocity(i2)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/velocity(i2)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)J.m^-3AoSKinetic energy density (sum over states when multiple states […]

Kinetic energy density (sum over states when multiple states are considered), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)/values(:)J.m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)/coefficients(:,:)J.m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/energy_density_kinetic(i2)/values

2

1...N

ggd(itime)/neutral(i1)/multiple_states_flagINT_0DMultiple state calculation flag : 0-Only one state is considered; […]

Multiple state calculation flag : 0-Only one state is considered; 1-Multiple states are considered and are described in the state structure

ggd(itime)/neutral(i1)/state(i2)AoSQuantities related to the different states of the species (energy, […]

Quantities related to the different states of the species (energy, excitation, …)

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/nameSTR_0DString identifying state

String identifying state

Changed in version 3.42.0: Renamed from label

ggd(itime)/neutral(i1)/state(i2)/electron_configurationSTR_0DConfiguration of atomic orbitals of this state, e.g. […]

Configuration of atomic orbitals of this state, e.g. 1s2-2s1

ggd(itime)/neutral(i1)/state(i2)/vibrational_leveleFLT_0DVibrational level (can be bundled)

Vibrational level (can be bundled)

ggd(itime)/neutral(i1)/state(i2)/vibrational_modeSTR_0DVibrational mode of this state, e.g. […]

Vibrational mode of this state, e.g. “A_g”. Need to define, or adopt a standard nomenclature.

ggd(itime)/neutral(i1)/state(i2)/neutral_typestructureNeutral type, in terms of energy. […]

Neutral type, in terms of energy. ID =1: cold; 2: thermal; 3: fast; 4: NBI

ggd(itime)/neutral(i1)/state(i2)/neutral_type/nameSTR_0DShort string identifier

Short string identifier

ggd(itime)/neutral(i1)/state(i2)/neutral_type/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

ggd(itime)/neutral(i1)/state(i2)/neutral_type/descriptionSTR_0DVerbose description

Verbose description

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)eVAoSTemperature, given on various grid subsets

Temperature, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/temperature(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/density(i3)m^-3AoSDensity (thermal+non-thermal), given on various grid subsets

Density (thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/density(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/density(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/density(i3)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/density(i3)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/density(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)m^-3AoSDensity of fast (non-thermal) particles, given on various grid […]

Density of fast (non-thermal) particles, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)/values(:)m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)/coefficients(:,:)m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/density_fast(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)PaAoSPressure, given on various grid subsets

Pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/pressure(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)PaAoSFast (non-thermal) perpendicular pressure, given on various grid […]

Fast (non-thermal) perpendicular pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_perpendicular(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)PaAoSFast (non-thermal) parallel pressure, given on various grid subsets

Fast (non-thermal) parallel pressure, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/pressure_fast_parallel(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)m.s^-1AoSVelocity, given on various grid subsets

Velocity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)m.s^-1AoSVelocity due to the diamagnetic drift, given on various grid […]

Velocity due to the diamagnetic drift, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_diamagnetic(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)m.s^-1AoSVelocity due to the ExB drift, given on various grid subsets

Velocity due to the ExB drift, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/radial(:)m.s^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/radial_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/diamagnetic(:)m.s^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/diamagnetic_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/parallel(:)m.s^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/parallel_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/poloidal(:)m.s^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/poloidal_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/r(:)m.s^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/r_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/phi(:)m.s^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/phi_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/z(:)m.s^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/velocity_exb(i3)/z_coefficients(:,:)m.s^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)J.m^-3AoSKinetic energy density, given on various grid subsets

Kinetic energy density, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)/values(:)J.m^-3FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)/coefficients(:,:)J.m^-3FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/energy_density_kinetic(i3)/values

2

1...N

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)mixedAoSDistribution function, given on various grid subsets

Distribution function, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)/values(:)mixedFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)/coefficients(:,:)mixedFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/neutral(i1)/state(i2)/distribution_function(i3)/values

2

1...N

ggd(itime)/t_i_average(i1)eVAoSIon temperature (averaged on ion species), given on various grid […]

Ion temperature (averaged on ion species), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/t_i_average(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/t_i_average(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/t_i_average(i1)/values(:)eVFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/t_i_average(i1)/coefficients(:,:)eVFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/t_i_average(i1)/values

2

1...N

ggd(itime)/n_i_total_over_n_e(i1)1AoSRatio of total ion density (sum over ion species) over electron […]

Ratio of total ion density (sum over ion species) over electron density. (thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/n_i_total_over_n_e(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/n_i_total_over_n_e(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/n_i_total_over_n_e(i1)/values(:)1FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/n_i_total_over_n_e(i1)/coefficients(:,:)1FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/n_i_total_over_n_e(i1)/values

2

1...N

ggd(itime)/zeff(i1)1AoSEffective charge, given on various grid subsets

Effective charge, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/zeff(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/zeff(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/zeff(i1)/values(:)1FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/zeff(i1)/coefficients(:,:)1FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/zeff(i1)/values

2

1...N

ggd(itime)/pressure_thermal(i1)PaAoSThermal pressure (electrons+ions), given on various grid subsets

Thermal pressure (electrons+ions), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/pressure_thermal(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/pressure_thermal(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/pressure_thermal(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/pressure_thermal(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/pressure_thermal(i1)/values

2

1...N

ggd(itime)/pressure_perpendicular(i1)PaAoSTotal perpendicular pressure (electrons+ions, thermal+non-thermal), […]

Total perpendicular pressure (electrons+ions, thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/pressure_perpendicular(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/pressure_perpendicular(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/pressure_perpendicular(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/pressure_perpendicular(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/pressure_perpendicular(i1)/values

2

1...N

ggd(itime)/pressure_parallel(i1)PaAoSTotal parallel pressure (electrons+ions, thermal+non-thermal), […]

Total parallel pressure (electrons+ions, thermal+non-thermal), given on various grid subsets

Coordinate

1

1...N

ggd(itime)/pressure_parallel(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/pressure_parallel(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/pressure_parallel(i1)/values(:)PaFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/pressure_parallel(i1)/coefficients(:,:)PaFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/pressure_parallel(i1)/values

2

1...N

ggd(itime)/j_total(i1)A.m^-2AoSTotal current density, given on various grid subsets

Total current density, given on various grid subsets

Coordinate

1

1...N

New in version >3.32.1.

ggd(itime)/j_total(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_total(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_total(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_total(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_total(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_total(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_total(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_total(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_total(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_total(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_total(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_total(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_total(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_total(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_total(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_total(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_parallel(i1)A.m^-2AoSCurrent due to parallel electric and thermo-electric conductivity […]

Current due to parallel electric and thermo-electric conductivity and potential and electron temperature gradients along the field line, differences away from ambipolar flow in the parallel direction between ions and electrons (this is not the parallel component of j_total)

Coordinate

1

1...N

New in version >3.32.1.

ggd(itime)/j_parallel(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_parallel(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_parallel(i1)/values(:)A.m^-2FLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_parallel(i1)/coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/j_parallel(i1)/values

2

1...N

ggd(itime)/j_anomalous(i1)A.m^-2AoSAnomalous current density, given on various grid subsets

Anomalous current density, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_anomalous(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_anomalous(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_anomalous(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_anomalous(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_anomalous(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_anomalous(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_anomalous(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_anomalous(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_anomalous(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_anomalous(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_anomalous(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_anomalous(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_anomalous(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_anomalous(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_anomalous(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_anomalous(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_inertial(i1)A.m^-2AoSInertial current density, given on various grid subsets

Inertial current density, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_inertial(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_inertial(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_inertial(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_inertial(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_inertial(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_inertial(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_inertial(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_inertial(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_inertial(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_inertial(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_inertial(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_inertial(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_inertial(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_inertial(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_inertial(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_inertial(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_ion_neutral_friction(i1)A.m^-2AoSCurrent density due to ion neutral friction, given on various […]

Current density due to ion neutral friction, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_ion_neutral_friction(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_ion_neutral_friction(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_ion_neutral_friction(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_ion_neutral_friction(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_ion_neutral_friction(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_ion_neutral_friction(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_ion_neutral_friction(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_ion_neutral_friction(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_ion_neutral_friction(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_ion_neutral_friction(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_ion_neutral_friction(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_ion_neutral_friction(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_ion_neutral_friction(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_ion_neutral_friction(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_ion_neutral_friction(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_ion_neutral_friction(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_parallel_viscosity(i1)A.m^-2AoSCurrent density due to the parallel viscosity, given on various […]

Current density due to the parallel viscosity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_parallel_viscosity(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_parallel_viscosity(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_parallel_viscosity(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_parallel_viscosity(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_parallel_viscosity(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_parallel_viscosity(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_parallel_viscosity(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_parallel_viscosity(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_parallel_viscosity(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_parallel_viscosity(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_parallel_viscosity(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_parallel_viscosity(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_parallel_viscosity(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_parallel_viscosity(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_parallel_viscosity(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_parallel_viscosity(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_perpendicular_viscosity(i1)A.m^-2AoSCurrent density due to the perpendicular viscosity, given on […]

Current density due to the perpendicular viscosity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_perpendicular_viscosity(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_perpendicular_viscosity(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_perpendicular_viscosity(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_perpendicular_viscosity(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_perpendicular_viscosity(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_perpendicular_viscosity(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_perpendicular_viscosity(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_perpendicular_viscosity(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_heat_viscosity(i1)A.m^-2AoSCurrent density due to the heat viscosity, given on various grid […]

Current density due to the heat viscosity, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_heat_viscosity(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_heat_viscosity(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_heat_viscosity(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_heat_viscosity(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_heat_viscosity(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_heat_viscosity(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_heat_viscosity(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_heat_viscosity(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_heat_viscosity(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_heat_viscosity(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_heat_viscosity(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_heat_viscosity(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_heat_viscosity(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_heat_viscosity(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_heat_viscosity(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_heat_viscosity(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_pfirsch_schlueter(i1)A.m^-2AoSCurrent density due to Pfirsch-Schlüter effects, given on various […]

Current density due to Pfirsch-Schlüter effects, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_pfirsch_schlueter(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_pfirsch_schlueter(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_pfirsch_schlueter(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_pfirsch_schlueter(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_pfirsch_schlueter(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_pfirsch_schlueter(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_pfirsch_schlueter(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_pfirsch_schlueter(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_diamagnetic(i1)A.m^-2AoSCurrent density due to the diamgnetic drift, given on various […]

Current density due to the diamgnetic drift, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/j_diamagnetic(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/j_diamagnetic(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/j_diamagnetic(i1)/radial(:)A.m^-2FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_diamagnetic(i1)/radial_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_diamagnetic(i1)/diamagnetic(:)A.m^-2FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_diamagnetic(i1)/diamagnetic_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_diamagnetic(i1)/parallel(:)A.m^-2FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_diamagnetic(i1)/parallel_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_diamagnetic(i1)/poloidal(:)A.m^-2FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/j_diamagnetic(i1)/poloidal_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/j_diamagnetic(i1)/r(:)A.m^-2FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_diamagnetic(i1)/r_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/j_diamagnetic(i1)/phi(:)A.m^-2FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/j_diamagnetic(i1)/phi_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/j_diamagnetic(i1)/z(:)A.m^-2FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/j_diamagnetic(i1)/z_coefficients(:,:)A.m^-2FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/e_field(i1)V.m^-1AoSElectric field, given on various grid subsets

Electric field, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/e_field(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/e_field(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/e_field(i1)/radial(:)V.m^-1FLT_1DRadial component, one scalar value is provided per element in […]

Radial component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/e_field(i1)/radial_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the radial component, to be used […]

Interpolation coefficients for the radial component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/e_field(i1)/diamagnetic(:)V.m^-1FLT_1DDiamagnetic component, one scalar value is provided per element […]

Diamagnetic component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/e_field(i1)/diamagnetic_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the diamagnetic component, to […]

Interpolation coefficients for the diamagnetic component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/e_field(i1)/parallel(:)V.m^-1FLT_1DParallel component, one scalar value is provided per element […]

Parallel component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/e_field(i1)/parallel_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the parallel component, to be […]

Interpolation coefficients for the parallel component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/e_field(i1)/poloidal(:)V.m^-1FLT_1DPoloidal component, one scalar value is provided per element […]

Poloidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/e_field(i1)/poloidal_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the poloidal component, to be […]

Interpolation coefficients for the poloidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

ggd(itime)/e_field(i1)/r(:)V.m^-1FLT_1DComponent along the major radius axis, one scalar value is provided […]

Component along the major radius axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/e_field(i1)/r_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the component along the major […]

Interpolation coefficients for the component along the major radius axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/e_field(i1)/phi(:)V.m^-1FLT_1DToroidal component, one scalar value is provided per element […]

Toroidal component, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

Changed in version 3.42.0: Renamed from toroidal

ggd(itime)/e_field(i1)/phi_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the toroidal component, to be […]

Interpolation coefficients for the toroidal component, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

Changed in version 3.42.0: Renamed from toroidal_coefficients

ggd(itime)/e_field(i1)/z(:)V.m^-1FLT_1DComponent along the height axis, one scalar value is provided […]

Component along the height axis, one scalar value is provided per element in the grid subset.

Coordinate

1

1...N

New in version >3.37.2.

ggd(itime)/e_field(i1)/z_coefficients(:,:)V.m^-1FLT_2DInterpolation coefficients for the component along the height […]

Interpolation coefficients for the component along the height axis, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

1...N

2

1...N

New in version >3.37.2.

ggd(itime)/phi_potential(i1)VAoSElectric potential, given on various grid subsets

Electric potential, given on various grid subsets

Coordinate

1

1...N

ggd(itime)/phi_potential(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/phi_potential(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/phi_potential(i1)/values(:)VFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/phi_potential(i1)/coefficients(:,:)VFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/phi_potential(i1)/values

2

1...N

ggd(itime)/a_field_parallel(i1)T.mAoSParallel (to the local magnetic field) component of the magnetic […]

Parallel (to the local magnetic field) component of the magnetic vector potential, given on various grid subsets

Coordinate

1

1...N

New in version >3.38.1.

ggd(itime)/a_field_parallel(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd(itime)/a_field_parallel(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd(itime)/a_field_parallel(i1)/values(:)T.mFLT_1DOne scalar value is provided per element in the grid subset.

One scalar value is provided per element in the grid subset.

Coordinate

1

1...N

ggd(itime)/a_field_parallel(i1)/coefficients(:,:)T.mFLT_2DInterpolation coefficients, to be used for a high precision evaluation […]

Interpolation coefficients, to be used for a high precision evaluation of the physical quantity with finite elements, provided per element in the grid subset (first dimension).

Coordinate

1

ggd(itime)/a_field_parallel(i1)/values

2

1...N

ggd(itime)/timesFLT_0DTime

Time

ggd_fast(itime)AoSQuantities provided at a faster sampling rate than the full ggd […]

Quantities provided at a faster sampling rate than the full ggd quantities. These are either integrated quantities or local quantities provided on a reduced set of positions. Positions and integration domains are described by a set of grid_subsets (of size 1 for a position).

Coordinate

1

ggd_fast(itime)/time

ggd_fast(itime)/electronsstructureQuantities related to the electrons

Quantities related to the electrons

ggd_fast(itime)/electrons/temperature(i1)eVAoSTemperature, given at various positions (grid subset of size […]

Temperature, given at various positions (grid subset of size 1)

Coordinate

1

1...N

ggd_fast(itime)/electrons/temperature(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/electrons/temperature(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/electrons/temperature(i1)/valueeVFLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/electrons/density(i1)m^-3AoSDensity (thermal+non-thermal), given at various positions (grid […]

Density (thermal+non-thermal), given at various positions (grid subset of size 1)

Coordinate

1

1...N

ggd_fast(itime)/electrons/density(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/electrons/density(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/electrons/density(i1)/valuem^-3FLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/ion(i1)AoSQuantities related to the different ion species

Quantities related to the different ion species

Coordinate

1

1...N

ggd_fast(itime)/ion(i1)/element(i2)AoSList of elements forming the atom or molecule

List of elements forming the atom or molecule

Coordinate

1

1...N

ggd_fast(itime)/ion(i1)/element(i2)/auFLT_0DMass of atom

Mass of atom

ggd_fast(itime)/ion(i1)/element(i2)/z_neINT_0DNuclear charge

Nuclear charge

Changed in version 4.0.0: Type changed from FLT_0D

ggd_fast(itime)/ion(i1)/element(i2)/atoms_nINT_0DNumber of atoms of this element in the molecule

Number of atoms of this element in the molecule

ggd_fast(itime)/ion(i1)/z_ioneFLT_0DIon charge (of the dominant ionization state; lumped ions are […]

Ion charge (of the dominant ionization state; lumped ions are allowed).

ggd_fast(itime)/ion(i1)/nameSTR_0DString identifying the species (e.g. […]

String identifying the species (e.g. H+, D+, T+, He+2, C+, D2, DT, CD4, …)

Changed in version 3.42.0: Renamed from label

ggd_fast(itime)/ion(i1)/neutral_indexINT_0DIndex of the corresponding neutral species in the ../../neutral […]

Index of the corresponding neutral species in the ../../neutral array

ggd_fast(itime)/ion(i1)/content(i2)1AoSParticle content = total number of particles for this ion species […]

Particle content = total number of particles for this ion species in the volume of the grid subset, for various grid subsets

Coordinate

1

1...N

ggd_fast(itime)/ion(i1)/content(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/ion(i1)/content(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/ion(i1)/content(i2)/value1FLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/ion(i1)/temperature(i2)eVAoSTemperature (average over states when multiple states are considered), […]

Temperature (average over states when multiple states are considered), given at various positions (grid subset of size 1)

Coordinate

1

1...N

ggd_fast(itime)/ion(i1)/temperature(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/ion(i1)/temperature(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/ion(i1)/temperature(i2)/valueeVFLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/ion(i1)/density(i2)m^-3AoSDensity (thermal+non-thermal) (sum over states when multiple […]

Density (thermal+non-thermal) (sum over states when multiple states are considered), given at various positions (grid subset of size 1)

Coordinate

1

1...N

ggd_fast(itime)/ion(i1)/density(i2)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/ion(i1)/density(i2)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/ion(i1)/density(i2)/valuem^-3FLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/energy_thermal(i1)JAoSPlasma energy content = 3/2 \* integral over the volume of the […]

Plasma energy content = 3/2 * integral over the volume of the grid subset of the thermal pressure (summed over all species), for various grid subsets

Coordinate

1

1...N

ggd_fast(itime)/energy_thermal(i1)/grid_indexINT_0DIndex of the grid used to represent this quantity

Index of the grid used to represent this quantity

ggd_fast(itime)/energy_thermal(i1)/grid_subset_indexINT_0DIndex of the grid subset the data is provided on. […]

Index of the grid subset the data is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

ggd_fast(itime)/energy_thermal(i1)/valueJFLT_0DScalar value of the quantity on the grid subset (corresponding […]

Scalar value of the quantity on the grid subset (corresponding to a single local position or to an integrated value over the subset)

ggd_fast(itime)/timesFLT_0DTime

Time

statistics(itime)AoSStatistics for various time slices

Statistics for various time slices

Coordinate

1

statistics(itime)/time

New in version 3.40.0: lifecycle status alpha

New in version >3.39.0.

statistics(itime)/quantity_2d(i1)AoSSet of 2D quantities on which statistics are provided. […]

Set of 2D quantities on which statistics are provided. 2D means 1D+time dimension, so either a 1D quantity within a dynamic array of structure, or a 2D dynamic quantity outside of an array of structure. Therefore the resulting statistical value is 1D for a given statistics time slice.

Coordinate

1

1...N

statistics(itime)/quantity_2d(i1)/pathSTR_0DPath of the quantity within the IDS, following the syntax given […]

Path of the quantity within the IDS, following the syntax given in the link below

Click here for further documentation.

statistics(itime)/quantity_2d(i1)/statistics_type(i2)AoSSet of statistics types applied to the quantity

Set of statistics types applied to the quantity

Coordinate

1

1...N

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/identifierstructureIdentifier of the statistics type

Identifier of the statistics type

This is an identifier. See statistics_type_identifier for the available options.

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/identifier/nameSTR_0DShort string identifier

Short string identifier

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/identifier/indexINT_0DInteger identifier (enumeration index within a list). […]

Integer identifier (enumeration index within a list). Private identifier values must be indicated by a negative index.

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/identifier/descriptionSTR_0DVerbose description

Verbose description

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/value(:)mixedFLT_1DValue of the statistics for that quantity, the array corresponding […]

Value of the statistics for that quantity, the array corresponding to the first dimension of the original 2D quantity

Coordinate

1

1...N

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/grid_subset_indexINT_0DOnly if the statistics value is given on a different GGD grid […]

Only if the statistics value is given on a different GGD grid subset than the original quantity (e.g. if the statistics has worked over a dimension of the GGD), index of the new grid subset the statistics value is provided on. Corresponds to the index used in the grid subset definition: grid_subset(:)/identifier/index

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/grid_indexINT_0DOnly if the statistics value is given on a different GGD grid […]

Only if the statistics value is given on a different GGD grid subset than the original quantity (e.g. if the statistics has worked over a dimension of the GGD), index of the grid used to represent the statistics value

statistics(itime)/quantity_2d(i1)/statistics_type(i2)/uq_input_pathINT_0DFor Sobol index only, path to the related the uq_input quantity, […]

For Sobol index only, path to the related the uq_input quantity, e.g. ../../../uq_input_2d(3)

statistics(itime)/quantity_2d(i1)/distributionstructureProbability distribution function of the quantity

Probability distribution function of the quantity

statistics(itime)/quantity_2d(i1)/distribution/bins(:,:)mixedFLT_2DBins of quantitiy values, defined for each element (first dimension) […]

Bins of quantitiy values, defined for each element (first dimension) corresponding to the first dimension of the original 2D quantity

Coordinate

1

1...N

2

1...N

statistics(itime)/quantity_2d(i1)/distribution/probability(:,:)1FLT_2DProbability to have a value of the quantity between bins(n) and […]

Probability to have a value of the quantity between bins(n) and bins(n+1) (thus the size of its second dimension is the size of the second dimension of the bins array - 1). The first dimension correspond to the first dimension of the original 2D quantity

Coordinate

1

1...N (same as statistics(itime)/quantity_2d(i1)/distribution/bins)

2

1...N

statistics(itime)/uq_input_2d(i1)AoSIf the statistics are based on an uncertainty quantification […]

If the statistics are based on an uncertainty quantification process, set of 2D input quantities that are varied

Coordinate

1

1...N

statistics(itime)/uq_input_2d(i1)/pathSTR_0DPath of the quantity within the IDS, following the syntax given […]

Path of the quantity within the IDS, following the syntax given in the link below

Click here for further documentation.

statistics(itime)/uq_input_2d(i1)/distributionstructureProbability distribution function of the quantity

Probability distribution function of the quantity

statistics(itime)/uq_input_2d(i1)/distribution/bins(:,:)mixedFLT_2DBins of quantitiy values, defined for each element (first dimension) […]

Bins of quantitiy values, defined for each element (first dimension) corresponding to the first dimension of the original 2D quantity

Coordinate

1

1...N

2

1...N

statistics(itime)/uq_input_2d(i1)/distribution/probability(:,:)1FLT_2DProbability to have a value of the quantity between bins(n) and […]

Probability to have a value of the quantity between bins(n) and bins(n+1) (thus the size of its second dimension is the size of the second dimension of the bins array - 1). The first dimension correspond to the first dimension of the original 2D quantity

Coordinate

1

1...N (same as statistics(itime)/uq_input_2d(i1)/distribution/bins)

2

1...N

statistics(itime)/time_widthsFLT_0DWidth of the time interval over which the statistics have been […]

Width of the time interval over which the statistics have been calculated. By convention, the time interval starts at time-time_width and ends at time.

statistics(itime)/timesFLT_0DTime

Time

codestructure

See common IDS structure reference: code.

time(:)sFLT_1DGeneric time

Generic time

Coordinate

1

1...N