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Dataset: project=CMIP5, model=MPI-ESM-LR, Max Planck Institute for Meteorology (MPI-M), experiment=10- or 30-year run initialized in year 1960, time_frequency=mon, modeling realm=land, ensemble=r2i1p1, version=20120529
Catalog: TDS configuration file
dataFormatNetCDF
featureTypeGrid
idcmip5.output1.MPI-M.MPI-ESM-LR.decadal1960.mon.land.Lmon.r2i1p1.v20120529
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Variables
Properties

Variables:

  • Vocabulary [ CF-1.0]:
    • baresoilFrac (%) = Bare Soil Fraction = area_fraction
    • burntArea (%) = Burnt Area Fraction = area_fraction
    • c3PftFrac (%) = Total C3 PFT Cover Fraction = area_fraction
    • c4PftFrac (%) = Total C4 PFT Cover Fraction = area_fraction
    • cLitter (kg m-2) = Carbon Mass in Litter Pool = litter_carbon_content
    • cSoil (kg m-2) = Carbon Mass in Soil Pool = soil_carbon_content
    • cVeg (kg m-2) = Carbon Mass in Vegetation = vegetation_carbon_content
    • cropFrac (%) = Crop Fraction = area_fraction
    • fFire (kg m-2 s-1) = Carbon Mass Flux into Atmosphere due to CO2 Emission from Fire = surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_fires_excluding_anthropogenic_land_use_change
    • fLuc (kg m-2 s-1) = Net Carbon Mass Flux into Atmosphere due to Land Use Change = surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change
    • fVegLitter (kg m-2 s-1) = Total Carbon Mass Flux from Vegetation to Litter = litter_carbon_flux
    • gpp (kg m-2 s-1) = Carbon Mass Flux out of Atmosphere due to Gross Primary Production on Land = gross_primary_productivity_of_carbon
    • grassFrac (%) = Natural Grass Fraction = area_fraction
    • lai (1) = Leaf Area Index = leaf_area_index
    • landCoverFrac (%) = Plant Functional Type Grid Fraction = area_fraction
    • mrro (kg m-2 s-1) = Total Runoff = runoff_flux
    • mrros (kg m-2 s-1) = Surface Runoff = surface_runoff_flux
    • mrso (kg m-2) = Total Soil Moisture Content = soil_moisture_content
    • nbp (kg m-2 s-1) = Carbon Mass Flux out of Atmosphere due to Net Biospheric Production on Land = surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes
    • npp (kg m-2 s-1) = Carbon Mass Flux out of Atmosphere due to Net Primary Production on Land = net_primary_productivity_of_carbon
    • pastureFrac (%) = Anthropogenic Pasture Fraction = area_fraction
    • ra (kg m-2 s-1) = Carbon Mass Flux into Atmosphere due to Autotrophic (Plant) Respiration on Land = plant_respiration_carbon_flux
    • residualFrac (%) = Fraction of Grid Cell that is Land but Neither Vegetation-Covered nor Bare Soil = area_fraction
    • rh (kg m-2 s-1) = Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration on Land = heterotrophic_respiration_carbon_flux
    • shrubFrac (%) = Shrub Fraction = area_fraction
    • tran (kg m-2 s-1) = Transpiration = transpiration_flux
    • treeFrac (%) = Tree Cover Fraction = area_fraction
    • tsl (K) = Temperature of Soil = soil_temperature

Properties:

  • dataset_id = cmip5.output1.MPI-M.MPI-ESM-LR.decadal1960.mon.land.Lmon.r2i1p1
  • dataset_version = 20120529
  • dataset_id_template_ = cmip5.%(product)s.%(institute)s.%(model)s.%(experiment)s.%(time_frequency)s.%(realm)s.%(cmor_table)s.%(ensemble)s
  • project = cmip5
  • experiment = decadal1960
  • product = output1
  • model = MPI-ESM-LR
  • time_frequency = mon
  • realm = land
  • cmor_table = Lmon
  • ensemble = r2i1p1
  • institute = MPI-M
  • forcing = GHG Oz SD Sl Vl LU
  • title = MPI-ESM-LR model output prepared for CMIP5 10- or 30-year run initialized in year 1960
  • creation_time = 2016-01-06 15:18:01
  • format = netCDF, CF-1.4
  • drs_id = cmip5.output1.MPI-M.MPI-ESM-LR.decadal1960.mon.land.Lmon.r2i1p1
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