- Timestamp:
- 03/16/18 17:24:39 (6 years ago)
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- 1 edited
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CONFIG/UNIFORM/v6/IPSLCM6/GENERAL/PARAM/ping_orchidee.xml
r3606 r3658 8 8 <!-- --> 9 9 <!-- $HeadURL: svn://forge.ipsl.jussieu.fr/orchidee/trunk/ORCHIDEE/src_xml/CMIP6_ping_land.xml $ --> 10 <!-- $Date: 2018-0 2-16 16:45:53 +0100 (Fri, 16 Feb2018) $ -->11 <!-- $Revision: 50 04$ -->10 <!-- $Date: 2018-03-13 17:38:36 +0100 (Tue, 13 Mar 2018) $ --> 11 <!-- $Revision: 5091 $ --> 12 12 <!-- ==================================================================================================================== --> 13 13 … … 157 157 <field id="CMIP6_fVegFire" field_ref="dummy_XY_not_provided" /> <!-- P2 (kg m-2 s-1) fire_CO2_emissions_from_vegetation_carbon : Carbon Mass Flux from Vegetation into Atmosphere due to CO2 Emission from all Fire --> 158 158 <field id="CMIP6_fVegLitter" field_ref="fVegLitter" /> <!-- P1 (kg m-2 s-1) litter_carbon_flux : Total Carbon Mass Flux from Vegetation to Litter --> 159 <field id="CMIP6_fVegLitterMortality" field_ref="dummy_XY "/> <!-- P2 (kg m-2 s-1) mortality_litter_carbon_flux : Total Carbon Mass Flux from Vegetation to Litter as a Result of Mortality -->160 <field id="CMIP6_fVegLitterSenescence" field_ref="dummy_XY "/> <!-- P2 (kg m-2 s-1) senescence_litter_carbon_flux : Total Carbon Mass Flux from Vegetation to Litter as a Result of Leaf, Branch, and Root Senescence -->159 <field id="CMIP6_fVegLitterMortality" field_ref="dummy_XY_not_provided" /> <!-- P2 (kg m-2 s-1) mortality_litter_carbon_flux : Total Carbon Mass Flux from Vegetation to Litter as a Result of Mortality --> 160 <field id="CMIP6_fVegLitterSenescence" field_ref="dummy_XY_not_provided" /> <!-- P2 (kg m-2 s-1) senescence_litter_carbon_flux : Total Carbon Mass Flux from Vegetation to Litter as a Result of Leaf, Branch, and Root Senescence --> 161 161 <field id="CMIP6_fVegSoil" field_ref="dummy_XY_not_provided" /> <!-- P1 (kg m-2 s-1) carbon_mass_flux_into_soil_from_vegetation_excluding_litter : In some models part of carbon (e.g., root exudate) can go directly into the soil pool without entering litter. --> 162 <field id="CMIP6_fVegSoilMortality" field_ref="dummy_XY "/> <!-- P2 (kg m-2 s-1) mortality_vegtosoil_carbon_flux : Total Carbon Mass Flux from Vegetation to Soil as a result of mortality -->163 <field id="CMIP6_fVegSoilSenescence" field_ref="dummy_XY "/> <!-- P2 (kg m-2 s-1) senescence_vegtosoil_carbon_flux : Total Carbon Mass Flux from Vegetation to Soil as a result of leaf, branch, and root senescence -->162 <field id="CMIP6_fVegSoilMortality" field_ref="dummy_XY_not_provided" /> <!-- P2 (kg m-2 s-1) mortality_vegtosoil_carbon_flux : Total Carbon Mass Flux from Vegetation to Soil as a result of mortality --> 163 <field id="CMIP6_fVegSoilSenescence" field_ref="dummy_XY_not_provided" /> <!-- P2 (kg m-2 s-1) senescence_vegtosoil_carbon_flux : Total Carbon Mass Flux from Vegetation to Soil as a result of leaf, branch, and root senescence --> 164 164 <field id="CMIP6_fahLut" field_ref="dummy_XY_landUse_not_provided" /> <!-- P1 (W m-2) surface_upward_heat_flux_due_to_anthropogenic_energy_consumption : Anthropogenic heat flux generated from non-renewable human primary energy consumption, including energy use by vehicles, commercial and residential buildings, industry, and power plants. Primary energy refers to energy in natural resources, fossil and nonfossil, before conversion into other forms, such as electricity. --> 165 165 <field id="CMIP6_fldcapacity" field_ref="fldcapacity" /> <!-- P1 (%) : Field Capacity Warning: Defined as wilt/saturation, may still evolve (AD) --> … … 186 186 <field id="CMIP6_laiLut" field_ref="lailut" /> <!-- P1 (1) : Leaf Area Index on Land Use Tile --> 187 187 <field id="CMIP6_landCoverFrac" field_ref="landCoverFrac" /> <!-- P1 (%) area_fraction : The categories may differ from model to model, depending on their PFT definitions. This may include natural PFTs, anthropogenic PFTs, bare soil, lakes, urban areas, etc. Sum of all should equal the fraction of the grid-cell that is land. Warning: Note: here not multiplying by contfrac according to DR --> 188 <field id="CMIP6_lwsnl" field_ref="snowliqtot" /> <!-- P1 (kg m-2) liquid_water_content_of_snow_layer : where land over land: this is computed as the total mass of liquid water contained interstitially within the snow layer of the land portion of a grid cell divided by the area of the land portion of the cell. Warning: Computed only for the layered scheme on vegetated and bare soil area. Warning: Does the mention 'divided by the area of the land portion of the cell' means we have to multiply by contfrac?-->188 <field id="CMIP6_lwsnl" field_ref="snowliqtot" /> <!-- P1 (kg m-2) liquid_water_content_of_snow_layer : where land over land: this is computed as the total mass of liquid water contained interstitially within the snow layer of the land portion of a grid cell divided by the area of the land portion of the cell. Warning: Computed only for the layered scheme on vegetated and bare soil area. --> 189 189 <field id="CMIP6_mrfso" field_ref="humtot_frozen" /> <!-- P1 (kg m-2) soil_frozen_water_content : the mass (summed over all all layers) of frozen water. Warning: To be calculated. --> 190 190 <field id="CMIP6_mrfsofr" field_ref="profil_froz_hydro" /> <!-- P1 (1) mass_fraction_of_frozen_water_in_soil_moisture : mass_fraction_of_frozen_water_in_soil_layer -->
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