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_seaice.json
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_seaice.json
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{
"label": "Seaice",
"description": "Sea ice",
"id": "cmip6.seaice",
"contact": "Ruth Petrie",
"processes": [
{
"label": "Dynamics",
"description": "Sea Ice Dynamics",
"id": "cmip6.seaice.dynamics",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Name",
"description": "Commonly used name for the dynamics in seaice model.",
"id": "cmip6.seaice.dynamics.name",
"cardinality": "0.1",
"type": "str",
"is_cim_property": true,
"uiOrdinal": 1
},
{
"label": "Overview",
"description": "Overview of sea ice dynamics in seaice model.",
"id": "cmip6.seaice.dynamics.overview",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": true,
"uiOrdinal": 2
},
{
"label": "Horizontal Transport",
"description": "What is the method of horizontal advection of sea ice?",
"id": "cmip6.seaice.dynamics.horizontal_transport",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Transport Methods",
"description": "Transport Methods",
"isOpen": true,
"choices": [
{
"label": "Incremental Re-mapping",
"description": "(including Semi-Lagrangian)"
},
{
"label": "Prather",
"description": null
},
{
"label": "Eulerian",
"description": null
}
]
},
"uiOrdinal": 3
},
{
"label": "Transport In Thickness Space",
"description": "What is the method of sea ice transport in thickness space (i.e. in thickness categories)?",
"id": "cmip6.seaice.dynamics.transport_in_thickness_space",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Transport Methods",
"description": "Transport Methods",
"isOpen": true,
"choices": [
{
"label": "Incremental Re-mapping",
"description": "(including Semi-Lagrangian)"
},
{
"label": "Prather",
"description": null
},
{
"label": "Eulerian",
"description": null
}
]
},
"uiOrdinal": 4
},
{
"label": "Ice Strength Formulation",
"description": "Which method of sea ice strength formulation is used?",
"id": "cmip6.seaice.dynamics.ice_strength_formulation",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Ice Strength",
"description": "Ice strength formulation methods",
"isOpen": true,
"choices": [
{
"label": "Hibler 1979",
"description": null
},
{
"label": "Rothrock 1975",
"description": null
}
]
},
"uiOrdinal": 5
},
{
"label": "Redistribution",
"description": "Which processes can redistribute sea ice (including thickness)?",
"id": "cmip6.seaice.dynamics.redistribution",
"cardinality": "1.N",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Redistribution Types",
"description": "Sea Ice Redistribution types",
"isOpen": true,
"choices": [
{
"label": "Rafting",
"description": null
},
{
"label": "Ridging",
"description": null
}
]
},
"uiOrdinal": 6
},
{
"label": "Rheology",
"description": "Rheology, what is the ice deformation formulation?",
"id": "cmip6.seaice.dynamics.rheology",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Rheology Types",
"description": "Sea ice rheology types",
"isOpen": true,
"choices": [
{
"label": "Free-drift",
"description": null
},
{
"label": "Mohr-Coloumb",
"description": null
},
{
"label": "Visco-plastic",
"description": "VP"
},
{
"label": "Elastic-visco-plastic",
"description": "EVP"
},
{
"label": "Elastic-anisotropic-plastic",
"description": null
},
{
"label": "Granular",
"description": null
}
]
},
"uiOrdinal": 7
}
]
},
{
"label": "Thermodynamics",
"description": "Sea Ice Thermodynamics",
"id": "cmip6.seaice.thermodynamics",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Name",
"description": "Commonly used name for the thermodynamics in seaice model.",
"id": "cmip6.seaice.thermodynamics.name",
"cardinality": "0.1",
"type": "str",
"is_cim_property": true,
"uiOrdinal": 1
},
{
"label": "Overview",
"description": "Overview of sea ice thermodynamics in seaice model.",
"id": "cmip6.seaice.thermodynamics.overview",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": true,
"uiOrdinal": 2
}
],
"subProcesses": [
{
"label": "Energy",
"description": "Processes related to energy in sea ice thermodynamics.",
"id": "cmip6.seaice.thermodynamics.energy",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Enthalpy Formulation",
"description": "What is the energy formulation?",
"id": "cmip6.seaice.thermodynamics.energy.enthalpy_formulation",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Energy Formulation",
"description": "Thermodynamic energy formulations",
"isOpen": true,
"choices": [
{
"label": "Pure ice latent heat (Semtner 0-layer)",
"description": null
},
{
"label": "Pure ice latent and sensible heat",
"description": null
},
{
"label": "Pure ice latent and sensible heat + brine heat reservoir (Semtner 3-layer)",
"description": null
},
{
"label": "Pure ice latent and sensible heat + explicit brine inclusions (Bitz and Lipscomb)",
"description": null
}
]
},
"uiOrdinal": 1
},
{
"label": "Thermal Conductivity",
"description": "What type of thermal conductivity is used?",
"id": "cmip6.seaice.thermodynamics.energy.thermal_conductivity",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Thermal Conductivity Type",
"description": "Types of thermal conductivity",
"isOpen": true,
"choices": [
{
"label": "Pure ice",
"description": null
},
{
"label": "Saline ice",
"description": null
}
]
},
"uiOrdinal": 2
},
{
"label": "Heat Diffusion",
"description": "What is the method of heat diffusion?",
"id": "cmip6.seaice.thermodynamics.energy.heat_diffusion",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Heat Diffusion Type",
"description": "Heat diffusion types.",
"isOpen": true,
"choices": [
{
"label": "Conduction fluxes",
"description": null
},
{
"label": "Conduction and radiation heat fluxes",
"description": null
},
{
"label": "Conduction, radiation and latent heat transport",
"description": null
}
]
},
"uiOrdinal": 3
},
{
"label": "Basal Heat Flux",
"description": "Method by which basal ocean heat flux is handled?",
"id": "cmip6.seaice.thermodynamics.energy.basal_heat_flux",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Basal Heat Flux Method",
"description": "Basal ocean heat flux methodology.",
"isOpen": true,
"choices": [
{
"label": "Heat Reservoir",
"description": "Brine inclusions treated as a heat reservoir."
},
{
"label": "Thermal Fixed Salinity",
"description": "Thermal properties depend on S-T (with fixed salinity)."
},
{
"label": "Thermal Varying Salinity",
"description": "Thermal properties depend on S-T (with varying salinity."
}
]
},
"uiOrdinal": 4
},
{
"label": "Fixed Salinity Value",
"description": "If you have selected {Thermal properties depend on S-T (with fixed salinity)},\n supply fixed salinity value for each sea ice layer.",
"id": "cmip6.seaice.thermodynamics.energy.fixed_salinity_value",
"cardinality": "0.1",
"type": "float",
"is_cim_property": false,
"uiOrdinal": 5
},
{
"label": "Heat Content Of Precipitation",
"description": "Describe the method by which the heat content of precipitation is handled.",
"id": "cmip6.seaice.thermodynamics.energy.heat_content_of_precipitation",
"cardinality": "1.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 6
},
{
"label": "Precipitation Effects On Salinity",
"description": "If precipitation (freshwater) that falls on sea ice affects the ocean surface\n salinity please provide further details.",
"id": "cmip6.seaice.thermodynamics.energy.precipitation_effects_on_salinity",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 7
}
]
},
{
"label": "Mass",
"description": "Processes related to mass in sea ice thermodynamics.",
"id": "cmip6.seaice.thermodynamics.mass",
"contact": "Ruth Petrie",
"properties": [
{
"label": "New Ice Formation",
"description": "Describe the method by which new sea ice is formed in open water.",
"id": "cmip6.seaice.thermodynamics.mass.new_ice_formation",
"cardinality": "1.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 1
},
{
"label": "Ice Vertical Growth And Melt",
"description": "Describe the method that governs the vertical growth and melt of sea ice.",
"id": "cmip6.seaice.thermodynamics.mass.ice_vertical_growth_and_melt",
"cardinality": "1.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 2
},
{
"label": "Ice Lateral Melting",
"description": "What is the method of sea ice lateral melting?",
"id": "cmip6.seaice.thermodynamics.mass.ice_lateral_melting",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Lateral Melting Types",
"description": "Ice lateral melting methods",
"isOpen": true,
"choices": [
{
"label": "Floe-size dependent (Bitz et al 2001)",
"description": null
},
{
"label": "Virtual thin ice melting (for single-category)",
"description": null
}
]
},
"uiOrdinal": 3
},
{
"label": "Ice Surface Sublimation",
"description": "Describe the method that governs sea ice surface sublimation.",
"id": "cmip6.seaice.thermodynamics.mass.ice_surface_sublimation",
"cardinality": "1.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 4
},
{
"label": "Frazil Ice",
"description": "Describe the method of frazil ice formation.",
"id": "cmip6.seaice.thermodynamics.mass.frazil_ice",
"cardinality": "1.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 5
}
]
},
{
"label": "Salt",
"description": "Processes related to salt in sea ice thermodynamics.",
"id": "cmip6.seaice.thermodynamics.salt",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Has Multiple Sea Ice Salinities",
"description": "Does the sea ice model use two different salinities: one for\n thermodynamic calculations; and one for the salt budget?",
"id": "cmip6.seaice.thermodynamics.salt.has_multiple_sea_ice_salinities",
"cardinality": "1.1",
"type": "bool",
"is_cim_property": false,
"uiOrdinal": 1
},
{
"label": "Sea Ice Salinity Thermal Impacts",
"description": "Does sea ice salinity impact the thermal properties of sea ice?",
"id": "cmip6.seaice.thermodynamics.salt.sea_ice_salinity_thermal_impacts",
"cardinality": "1.1",
"type": "bool",
"is_cim_property": false,
"uiOrdinal": 2
}
],
"propertySets": [
{
"label": "Mass Transport",
"description": "Mass transport of salt.",
"id": "cmip6.seaice.thermodynamics.salt.mass_transport",
"properties": [
{
"label": "Salinity Type",
"description": "How is salinity determined in the mass transport of salt calculation?",
"id": "cmip6.seaice.thermodynamics.salt.mass_transport.salinity_type",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Salinity Method",
"description": "Method of describing the value of salinity.",
"isOpen": true,
"choices": [
{
"label": "Constant",
"description": null
},
{
"label": "Prescribed salinity profile",
"description": null
},
{
"label": "Prognostic salinity profile",
"description": null
}
]
},
"uiOrdinal": 1
},
{
"label": "Constant Salinity Value",
"description": "If using a constant salinity value specify this value in PSU?",
"id": "cmip6.seaice.thermodynamics.salt.mass_transport.constant_salinity_value",
"cardinality": "0.1",
"type": "float",
"is_cim_property": false,
"uiOrdinal": 2
},
{
"label": "Additional Details",
"description": "Describe the salinity profile used.",
"id": "cmip6.seaice.thermodynamics.salt.mass_transport.additional_details",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 3
}
]
},
{
"label": "Thermodynamics",
"description": "Salt thermodynamics",
"id": "cmip6.seaice.thermodynamics.salt.thermodynamics",
"properties": [
{
"label": "Salinity Type",
"description": "How is salinity determined in the thermodynamic calculation?",
"id": "cmip6.seaice.thermodynamics.salt.thermodynamics.salinity_type",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Salinity Method",
"description": "Method of describing the value of salinity.",
"isOpen": true,
"choices": [
{
"label": "Constant",
"description": null
},
{
"label": "Prescribed salinity profile",
"description": null
},
{
"label": "Prognostic salinity profile",
"description": null
}
]
},
"uiOrdinal": 1
},
{
"label": "Constant Salinity Value",
"description": "If using a constant salinity value specify this value in PSU?",
"id": "cmip6.seaice.thermodynamics.salt.thermodynamics.constant_salinity_value",
"cardinality": "0.1",
"type": "float",
"is_cim_property": false,
"uiOrdinal": 2
},
{
"label": "Additional Details",
"description": "Describe the salinity profile used.",
"id": "cmip6.seaice.thermodynamics.salt.thermodynamics.additional_details",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 3
}
]
}
]
},
{
"label": "Ice Thickness Distribution",
"description": "Ice thickness distribution details.",
"id": "cmip6.seaice.thermodynamics.ice_thickness_distribution",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Representation",
"description": "How is the sea ice thickness distribution represented?",
"id": "cmip6.seaice.thermodynamics.ice_thickness_distribution.representation",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Ice Thickness Representation",
"description": "Types of sea ice thickness representation.",
"isOpen": true,
"choices": [
{
"label": "Explicit",
"description": null
},
{
"label": "Virtual (enhancement of thermal conductivity, thin ice melting)",
"description": null
}
]
},
"uiOrdinal": 1
}
]
},
{
"label": "Ice Floe Size Distribution",
"description": "Ice floe-size distribution details.",
"id": "cmip6.seaice.thermodynamics.ice_floe_size_distribution",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Representation",
"description": "How is the sea ice floe-size represented?",
"id": "cmip6.seaice.thermodynamics.ice_floe_size_distribution.representation",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Ice Floe Size",
"description": "Ice floe-size representation.",
"isOpen": true,
"choices": [
{
"label": "Explicit",
"description": null
},
{
"label": "Parameterised",
"description": null
}
]
},
"uiOrdinal": 1
},
{
"label": "Additional Details",
"description": "Provide further details on any parameterisation of floe-size.",
"id": "cmip6.seaice.thermodynamics.ice_floe_size_distribution.additional_details",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 2
}
]
},
{
"label": "Melt Ponds",
"description": "Characteristics of melt ponds.",
"id": "cmip6.seaice.thermodynamics.melt_ponds",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Are Included",
"description": "Are melt ponds included in the sea ice model?",
"id": "cmip6.seaice.thermodynamics.melt_ponds.are_included",
"cardinality": "1.1",
"type": "bool",
"is_cim_property": false,
"uiOrdinal": 1
},
{
"label": "Formulation",
"description": "What method of melt pond formulation is used?",
"id": "cmip6.seaice.thermodynamics.melt_ponds.formulation",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Melt Pond Formulation",
"description": "Formulations of melt ponds.",
"isOpen": true,
"choices": [
{
"label": "Flocco and Feltham (2010)",
"description": null
},
{
"label": "Level-ice melt ponds",
"description": null
}
]
},
"uiOrdinal": 2
},
{
"label": "Impacts",
"description": "What do melt ponds have an impact on?",
"id": "cmip6.seaice.thermodynamics.melt_ponds.impacts",
"cardinality": "1.N",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Melt Pond Impacts",
"description": "Impacts of melt ponds.",
"isOpen": true,
"choices": [
{
"label": "Albedo",
"description": null
},
{
"label": "Freshwater",
"description": null
},
{
"label": "Heat",
"description": null
}
]
},
"uiOrdinal": 3
}
]
},
{
"label": "Snow Processes",
"description": "Thermodynamic processes in snow on sea ice",
"id": "cmip6.seaice.thermodynamics.snow_processes",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Has Snow Aging",
"description": "Set to True if the sea ice model has a snow aging scheme.",
"id": "cmip6.seaice.thermodynamics.snow_processes.has_snow_aging",
"cardinality": "1.1",
"type": "bool",
"is_cim_property": false,
"uiOrdinal": 1
},
{
"label": "Snow Aging Scheme",
"description": "Describe the snow aging scheme.",
"id": "cmip6.seaice.thermodynamics.snow_processes.snow_aging_scheme",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 2
},
{
"label": "Has Snow Ice Formation",
"description": "Set to True if the sea ice model has snow ice formation.",
"id": "cmip6.seaice.thermodynamics.snow_processes.has_snow_ice_formation",
"cardinality": "1.1",
"type": "bool",
"is_cim_property": false,
"uiOrdinal": 3
},
{
"label": "Snow Ice Formation Scheme",
"description": "Describe the snow ice formation scheme.",
"id": "cmip6.seaice.thermodynamics.snow_processes.snow_ice_formation_scheme",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": false,
"uiOrdinal": 4
},
{
"label": "Redistribution",
"description": "What is the impact of ridging on snow cover?",
"id": "cmip6.seaice.thermodynamics.snow_processes.redistribution",
"cardinality": "1.1",
"type": "str",
"is_cim_property": false,
"uiOrdinal": 5
},
{
"label": "Heat Diffusion",
"description": "What is the heat diffusion through snow methodology in sea ice thermodynamics?",
"id": "cmip6.seaice.thermodynamics.snow_processes.heat_diffusion",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Snow Process Types",
"description": "Types of snow processes.",
"isOpen": true,
"choices": [
{
"label": "Single-layered heat diffusion",
"description": null
},
{
"label": "Multi-layered heat diffusion",
"description": null
}
]
},
"uiOrdinal": 6
}
]
}
]
},
{
"label": "Radiative Processes",
"description": "Sea Ice Radiative Processes",
"id": "cmip6.seaice.radiative_processes",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Name",
"description": "Commonly used name for the radiative processes in seaice model.",
"id": "cmip6.seaice.radiative_processes.name",
"cardinality": "0.1",
"type": "str",
"is_cim_property": true,
"uiOrdinal": 1
},
{
"label": "Overview",
"description": "Overview of sea ice radiative processes in seaice model.",
"id": "cmip6.seaice.radiative_processes.overview",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": true,
"uiOrdinal": 2
},
{
"label": "Surface Albedo",
"description": "Method used to handle surface albedo?",
"id": "cmip6.seaice.radiative_processes.surface_albedo",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Seaice Albedo",
"description": "Surface albedo of sea ice component.",
"isOpen": true,
"choices": [
{
"label": "Delta-Eddington",
"description": null
},
{
"label": "Parameterized",
"description": "Sea ice albedo is parameterized."
},
{
"label": "Multi-band albedo",
"description": "Albedo value has a spectral dependence."
}
]
},
"uiOrdinal": 3
},
{
"label": "Ice Radiation Transmission",
"description": "Method by which solar radiation through sea ice is handled?",
"id": "cmip6.seaice.radiative_processes.ice_radiation_transmission",
"cardinality": "1.N",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Ice Transmission",
"description": "Ice radiative transmission.",
"isOpen": true,
"choices": [
{
"label": "Delta-Eddington",
"description": null
},
{
"label": "Exponential attenuation",
"description": null
},
{
"label": "Ice radiation transmission per category",
"description": "Radiation transmission through ice is different for each sea ice category."
}
]
},
"uiOrdinal": 4
}
]
}
],
"grid": {
"label": "Grid",
"description": "Sea Ice grid",
"id": "cmip6.seaice.grid",
"contact": "Ruth Petrie",
"properties": [
{
"label": "Name",
"description": "Name of grid in seaice model.",
"id": "cmip6.seaice.grid.name",
"cardinality": "0.1",
"type": "str",
"is_cim_property": true,
"uiOrdinal": 1
},
{
"label": "Overview",
"description": "Overview of grid in seaice model.",
"id": "cmip6.seaice.grid.overview",
"cardinality": "0.1",
"type": "l-str",
"is_cim_property": true,
"uiOrdinal": 2
}
],
"subProcesses": [
{
"label": "Discretisation",
"description": "Sea ice discretisation",
"id": "cmip6.seaice.grid.discretisation",
"contact": "Ruth Petrie",
"propertySets": [
{
"label": "Horizontal",
"description": "Sea ice discretisation in the horizontal",
"id": "cmip6.seaice.grid.discretisation.horizontal",
"properties": [
{
"label": "Grid",
"description": "On which grid is the sea ice horizontal discretisation?",
"id": "cmip6.seaice.grid.discretisation.horizontal.grid",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Horizontal Grid",
"description": "Horizontal discretisation grids",
"isOpen": true,
"choices": [
{
"label": "Ocean grid",
"description": "Sea ice is horizontally discretised on the ocean grid."
},
{
"label": "Atmosphere Grid",
"description": "Sea ice is horizontally discretised on the atmospheric grid."
},
{
"label": "Own Grid",
"description": "Sea ice is horizontally discretised on its own independent grid."
}
]
},
"uiOrdinal": 1
},
{
"label": "Grid Type",
"description": "What is the structure type of the sea ice grid?",
"id": "cmip6.seaice.grid.discretisation.horizontal.grid_type",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Grid Structure",
"description": "Grid structure types",
"isOpen": true,
"choices": [
{
"label": "Structured grid",
"description": null
},
{
"label": "Unstructured grid",
"description": null
},
{
"label": "Adaptive grid",
"description": "Computational grid changes during the run"
}
]
},
"uiOrdinal": 2
},
{
"label": "Scheme",
"description": "What is the horizontal discretization (advection) scheme?",
"id": "cmip6.seaice.grid.discretisation.horizontal.scheme",
"cardinality": "1.1",
"type": "enum",
"is_cim_property": false,
"enum": {
"label": "Numerical Scheme",
"description": "Numerical advection schemes",
"isOpen": true,
"choices": [
{
"label": "Finite differences",
"description": null
},
{
"label": "Finite elements",
"description": null
},
{
"label": "Finite volumes",
"description": null
}
]
},
"uiOrdinal": 3
},
{
"label": "Thermodynamics Time Step",
"description": "What is the time step in the sea ice model thermodynamic component in seconds.",
"id": "cmip6.seaice.grid.discretisation.horizontal.thermodynamics_time_step",
"cardinality": "1.1",
"type": "int",
"is_cim_property": false,
"uiOrdinal": 4
},
{
"label": "Dynamics Time Step",
"description": "What is the time step in the sea ice model dynamic component in seconds.",
"id": "cmip6.seaice.grid.discretisation.horizontal.dynamics_time_step",
"cardinality": "1.1",
"type": "int",
"is_cim_property": false,
"uiOrdinal": 5
},
{
"label": "Additional Details",
"description": "Specify any additional horizontal discretisation details.",
"id": "cmip6.seaice.grid.discretisation.horizontal.additional_details",
"cardinality": "0.1",
"type": "l-str",