[ { "@graph" : [ { "@id" : "https://w3id.org/np/RAYE1loNYnR1zUdc5kjcMBYmU6kif3k3J9yz6nsL7kyuI", "@type" : [ "http://www.nanopub.org/nschema#Nanopublication" ], "http://www.nanopub.org/nschema#hasAssertion" : [ { "@id" : "https://w3id.org/np/RAYE1loNYnR1zUdc5kjcMBYmU6kif3k3J9yz6nsL7kyuI/assertion" } ], "http://www.nanopub.org/nschema#hasProvenance" : [ { "@id" : "https://w3id.org/np/RAYE1loNYnR1zUdc5kjcMBYmU6kif3k3J9yz6nsL7kyuI/provenance" } ], "http://www.nanopub.org/nschema#hasPublicationInfo" : [ { "@id" : "https://w3id.org/np/RAYE1loNYnR1zUdc5kjcMBYmU6kif3k3J9yz6nsL7kyuI/pubinfo" } ] } ], "@id" : "https://w3id.org/np/RAYE1loNYnR1zUdc5kjcMBYmU6kif3k3J9yz6nsL7kyuI/Head" }, { "@graph" : [ { "@id" : "http://eurovoc.europa.eu/2919", "@type" : [ "http://schema.org/DefinedTerm" ], "http://schema.org/description" : [ { "@value" : "" } ], "http://schema.org/name" : [ { "@value" : "Environmental research" } ] }, { "@id" : "http://eurovoc.europa.eu/3941", "@type" : [ "http://schema.org/DefinedTerm" ], "http://schema.org/description" : [ { "@value" : "" } ], "http://schema.org/name" : [ { "@value" : "Life sciences" } ] }, { "@id" : "http://eurovoc.europa.eu/3946", "@type" : [ "http://schema.org/DefinedTerm" ], "http://schema.org/description" : [ { "@value" : "" } ], "http://schema.org/name" : [ { "@value" : "Physical sciences" } ] }, { "@id" : "http://eurovoc.europa.eu/3952", "@type" : [ "http://schema.org/DefinedTerm" ], "http://schema.org/description" : [ { "@value" : "" } ], "http://schema.org/name" : [ { "@value" : "Earth sciences" } ] }, { "@id" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7/", "@type" : [ "http://purl.org/wf4ever/ro#ResearchObject", "http://purl.org/wf4ever/roevo#LiveRO", "http://schema.org/Dataset", "http://w3id.org/ro/earth-science#DataResearchObject", "https://w3id.org/ro/terms/earth-science#DataResearchObject" ], "http://schema.org/about" : [ { "@id" : "http://eurovoc.europa.eu/2919" }, { "@id" : "http://eurovoc.europa.eu/3941" }, { "@id" : "http://eurovoc.europa.eu/3946" }, { "@id" : "http://eurovoc.europa.eu/3952" } ], "http://schema.org/author" : [ { "@id" : "mailto:oyvind.seland@rohub.com" } ], "http://schema.org/contentSize" : [ { "@type" : "http://www.w3.org/2001/XMLSchema#integer", "@value" : "20826" } ], "http://schema.org/contentUrl" : [ { "@value" : "https://api.rohub.org/api/ros/2201ca0d-8df7-410d-879f-c17040d1fcf7/crate/download/" } ], "http://schema.org/creator" : [ { "@id" : "mailto:georgehadib@gmail.com" } ], "http://schema.org/dateCreated" : [ { "@value" : "2022-03-22 02:44:05.262338+00:00" } ], "http://schema.org/dateModified" : [ { "@value" : "2025-03-05 12:48:06.700108+00:00" } ], "http://schema.org/datePublished" : [ { "@value" : "2022-03-22 02:44:05.262338+00:00" } ], "http://schema.org/description" : [ { "@value" : "Results from coupled simulations of NorESM1-Happi model. This is a slightly modified version of NorESM1-M used for CMIP5 and with 1 degree atmospheric horizontal resolution. The dataset includes DECK; 3 historical ensemble member; RCP26,RCP45,RCP85 scenarios;DAMIP;simulation with full Aerocom output: Stabilization scenarios, i.e. model runs that stabilize the warming to 1.5 and 2 degrees\n Data description: Source = CAM ; Variables =\t\tP0:reference pressure ;\tlat:latitude ;\tlon:longitude ;\tslat:staggered latitude ;\tslon:staggered longitude ;\tw_stag:staggered latitude weights ;\tlev:hybrid level at midpoints (1000*(A+B)) ;\tilev:hybrid level at interfaces (1000*(A+B)) ;\tisccp_prs:Mean ISCCP pressure ;\tisccp_tau:Mean ISCCP optical depth ;\tisccp_prstau:Mean pressure (mb).mean optical depth (unitless)/1000 ;\ttime:time ;\ttime_bnds:time interval endpoints ;\tntrm:spectral truncation parameter M ;\tntrn:spectral truncation parameter N ;\tntrk:spectral truncation parameter K ;\tndbase:base day ;\tnsbase:seconds of base day ;\tnbdate:base date (YYYYMMDD) ;\tnbsec:seconds of base date ;\tmdt:timestep ;\tnlon:number of longitudes ;\twnummax:cutoff Fourier wavenumber ;\thyai:hybrid A coefficient at layer interfaces ;\thybi:hybrid B coefficient at layer interfaces ;\thyam:hybrid A coefficient at layer midpoints ;\thybm:hybrid B coefficient at layer midpoints ;\tgw:gauss weights ;\tndcur:current day (from base day) ;\tnscur:current seconds of current day ;\tdate:current date (YYYYMMDD) ;\tco2vmr:co2 volume mixing ratio ;\tch4vmr:ch4 volume mixing ratio ;\tn2ovmr:n2o volume mixing ratio ;\tf11vmr:f11 volume mixing ratio ;\tf12vmr:f12 volume mixing ratio ;\tsol_tsi:total solar irradiance ;\tdatesec:current seconds of current date ;\tnsteph:current timestep ;\tABSVIS:Aerosol absorptive optical depth at 0.35-0.64um ;\tAEROD_v:Total Aerosol Optical Depth in visible band ;\tAKCXS:Scheme excess aerosol mass burden ;\tAODVIS:Aerosol optical depth at 0.35-0.64um ;\tBAK:Aerosol extinction ;\tBC:Concentration ;\tBC_A:BC_A ;\tBC_AC:BC_AC ;\tBC_AI:BC_AI ;\tBC_AX:BC_AX ;\tBC_N:BC_N ;\tBC_NI:BC_NI ;\tCABSVIS:Clear air aerosol absorptive optical depth ;\tCAODVIS:Clear air aerosol optical depth ;\tCDNC:Cloud Droplet Number Concentration ;\tCDNCINT:Cloud Droplet Number Column ;\tCDNCIX:Aerosol calc cloud droplet number concentration ;\tCH2O2:H2O2 MMR from file ;\tCLDFOC:Frequency of Warm Cloud Occurence ;\tCLDFREE:Cloud free fraction wrt CAODVIS and CABSVIS ;\tCLDHGH:Vertically-integrated high cloud ;\tCLDICE:Grid box averaged cloud ice amount ;\tCLDLIQ:Grid box averaged cloud liquid amount ;\tCLDLIX:Aerosol calc averaged liquid condensate amount ;\tCLDLOW:Vertically-integrated low cloud ;\tCLDMED:Vertically-integrated mid-level cloud ;\tCLDTOT:Vertically-integrated total cloud ;\tCLOUD:Cloud fraction ;\tCMFDQ:QV tendency - shallow convection ;\tCMFDQR:Q tendency - shallow convection rainout ;\tCMFDT:T tendency - shallow convection ;\tCMFMC:Moist shallow convection mass flux ;\tCMFMCDZM:Convection mass flux from ZM deep ;\tCONCLD:Convective cloud cover ;\tC_BC:Column burden ;\tC_DMS:Column burden ;\tC_DUST:Column burden ;\tC_POM:Column burden ;\tC_SO2:Column burden ;\tC_SO4:Column burden ;\tC_SS:Column burden ;\tDAYFOC:Daylight fraction ;\tDCQ:Q tendency due to moist processes ;\tDMS:DMS ;\tDMSCO:Concentration ;\tDRY_BC:Dry deposition ;\tDRY_DUST:Dry deposition ;\tDRY_POM:Dry deposition ;\tDRY_SO2:Dry deposition ;\tDRY_SO4:Dry deposition ;\tDRY_SS:Dry deposition ;\tDST_A2:DST_A2 ;\tDST_A3:DST_A3 ;\tDTCOND:T tendency - moist processes ;\tDTV:T vertical diffusion ;\tDUST:Concentration ;\tEMI_BC:Emissions ;\tEMI_DMS:Emissions ;\tEMI_DUST:Emissions ;\tEMI_POM:Emissions ;\tEMI_SO2:Emissions ;\tEMI_SO4:Emissions ;\tEMI_SS:Emissions ;\tEVAPX:Evaporation of cloud droplets ;\tFICE:Fractional ice content within cloud ;\tFLDS:Downwelling longwave flux at surface ;\tFLDSC:Clearsky downwelling longwave flux at surface ;\tFLNS:Net longwave flux at surface ;\tFLNSC:Clearsky net longwave flux at surface ;\tFLNT:Net longwave flux at top of model ;\tFLNTC:Clearsky net longwave flux at top of model ;\tFLUT:Upwelling longwave flux at top of model ;\tFLUTC:Clearsky upwelling longwave flux at top of model ;\tFOCHANA:Frequency of Occurrence of Clouds with REHANA /= 0 ;\tFREEZ: rate of freezing of cloud droplets ;\tFREQSH:Fractional occurance of shallow convection ;\tFREQZM:Fractional occurance of ZM convection ;\tFSDS:Downwelling solar flux at surface ;\tFSDSC:Clearsky downwelling solar flux at surface ;\tFSNS:Net solar flux at surface ;\tFSNSC:Clearsky net solar flux at surface ;\tFSNT:Net solar flux at top of model ;\tFSNTC:Clearsky net solar flux at top of model ;\tFSNTOA:Net solar flux at top of atmosphere ;\tFSNTOAC:Clearsky net solar flux at top of atmosphere ;\tFSUTOA:Upwelling solar flux at top of atmosphere ;\tGAK:Aerosol assymetry factor ;\tGCLDLWP:Grid-box cloud water path ;\tH2O2:H2O2 ;\tICEFRAC:Fraction of sfc area covered by sea-ice ;\tICLDIWP:In-cloud ice water path ;\tICLDTWP:In-cloud cloud total water path (liquid and ice) ;\tICLDTWX:In-cloud cloud total water path (liquid and ice) ;\tICWMRX:Prognostic in-cloud water mixing ratio ;\tKHET:Aqueous-phase reaction rate ;\tLANDFRAC:Fraction of sfc area covered by land ;\tLCLOUD:Liquid cloud fraction ;\tLHFLX:Surface latent heat flux ;\tLWCF:Longwave cloud forcing ;\tMSAGA:MSA gas-phase prod ;\tMSKtem:TEM mask ;\tNDROPCOL:Column droplet number ;\tNDROPMIX:Droplet number mixing ;\tNDROPSNK:Droplet number loss by microphysics ;\tNDROPSRC:Droplet number source ;\tNRAINX:Loss of cloud droplets due to precip ;\tNUCRAT:Nucleation of cloud droplets ;\tNUSO4N:SO4 nucleation rate ;\tN_AER:Aerosol number concentration ;\tN_AERORG:Aerosol number concentration ;\tOCNFRAC:Fraction of sfc area covered by ocean ;\tODV_SSLTA:SSLTA optical depth in visible band ;\tODV_SSLTC:SSLTC optical depth in visible band ;\tODV_VOLC_MMR:VOLC_MMR optical depth in visible band ;\tODV_bcar1:bcar1 optical depth in visible band ;\tODV_bcar2:bcar2 optical depth in visible band ;\tODV_dust1:dust1 optical depth in visible band ;\tODV_dust2:dust2 optical depth in visible band ;\tODV_dust3:dust3 optical depth in visible band ;\tODV_dust4:dust4 optical depth in visible band ;\tODV_ocar1:ocar1 optical depth in visible band ;\tODV_ocar2:ocar2 optical depth in visible band ;\tODV_sulf:sulf optical depth in visible band ;\tOMEGA:Vertical velocity (pressure) ;\tOMEGAT:Vertical heat flux ;\tOM_AC:OM_AC ;\tOM_AI:OM_AI ;\tOM_NI:OM_NI ;\tPBLH:PBL height ;\tPCONVB:convection base pressure ;\tPCONVT:convection top pressure ;\tPHIS:Surface geopotential ;\tPOM:Concentration ;\tPRECC:Convective precipitation rate (liq + ice) ;\tPRECCDZM:Convective precipitation rate from ZM deep ;\tPRECL:Large-scale (stable) precipitation rate (liq + ice) ;\tPRECSC:Convective snow rate (water equivalent) ;\tPRECSH:Shallow Convection precipitation rate ;\tPRECSL:Large-scale (stable) snow rate (water equivalent) ;\tPRECT:Total (convective and large-scale) precipitation rate (liq + ice) ;\tPS:Surface pressure ;\tPSL:Sea level pressure ;\tQ:Specific humidity ;\tQC:Q tendency - shallow convection LW export ;\tQFLX:Surface water flux ;\tQREFHT:Reference height humidity ;\tQRL:Longwave heating rate ;\tQRS:Solar heating rate ;\tREFFL:Effective Radius of Cloud Droplets ;\tREHANA:Effective radius as seen from satellite ;\tRELH:Fictive relative humidity ;\tRELHUM:Relative humidity ;\tRHREFHT:Reference height relative humidity ;\tS2GA:SO2 gas-phase prod ;\tS4AQ:Sulphate aq.phase prod ;\tS4GA:Sulphate gas-phase prod ;\tSELFX:Selfcollection of cloud droplets ;\tSFCDNCIX:CDNCIX surface flux ;\tSFCLDICE:CLDICE surface flux ;\tSFCLDLIQ:CLDLIQ surface flux ;\tSFCLDLIX:CLDLIX surface flux ;\tSHFLX:Surface sensible heat flux ;\tSNOWHICE:Water equivalent snow depth ;\tSNOWHLND:Water equivalent snow depth ;\tSO2:SO2 ;\tSO2CO:Concentration ;\tSO4:Concentration ;\tSO4_A1:SO4_A1 ;\tSO4_A2:SO4_A2 ;\tSO4_AC:SO4_AC ;\tSO4_N:SO4_N ;\tSO4_NA:SO4_NA ;\tSO4_PR:SO4_PR ;\tSOLIN:Solar insolation ;\tSOLLD:Solar downward near infrared diffuse to surface ;\tSOLSD:Solar downward visible diffuse to surface ;\tSRFRAD:Net radiative flux at surface ;\tSS:Concentration ;\tSST:sea surface temperature ;\tSS_A1:SS_A1 ;\tSS_A2:SS_A2 ;\tSS_A3:SS_A3 ;\tSUPERSAT:Supersaturation from AGR schem ;\tSWCF:Shortwave cloud forcing ;\tT:Temperature ;\tTAUX:Zonal surface stress ;\tTAUY:Meridional surface stress ;\tTGCLDIWP:Total grid-box cloud ice water path ;\tTGCLDLWP:Total grid-box cloud liquid water path ;\tTGCLDLWX:Offline grid-box cloud liquid water path ;\tTH:Potential Temperature ;\tTH2d:Zonal-Mean potential temp ;\tTMQ:Total (vertically integrated) precipitatable water ;\tTREFHT:Reference height temperature ;\tTREFMNAV:Average of TREFHT daily minimum ;\tTREFMXAV:Average of TREFHT daily maximum ;\tTROP_P:Tropopause Pressure ;\tTROP_T:Tropopause Temperature ;\tTROP_Z:Tropopause Height ;\tTS:Surface temperature (radiative) ;\tTSMN:Minimum surface temperature over output period ;\tTSMX:Maximum surface temperature over output period ;\tU:Zonal wind ;\tU10:10m wind speed ;\tU2d:Zonal-Mean zonal wind ;\tUAS:Eastward 10m wind ;\tUS:Zonal wind, staggered ;\tUTGWORO:U tendency - orographic gravity wave drag ;\tUU:Zonal velocity squared ;\tUV2d:Meridional Flux of Zonal Momentum: 2D prj of zon. mean ;\tUV3d:Meridional Flux of Zonal Momentum: 3D zon. mean ;\tUW2d:Vertical Flux of Zonal Momentum; 2D prj of zon. mean ;\tUW3d:Vertical Flux of Zonal Momentum: 3D zon. mean ;\tV:Meridional wind ;\tV2d:Zonal-Mean meridional wind ;\tVAS:Northward 10m wind ;\tVD01:Vertical diffusion of Q ;\tVQ:Meridional water transport ;\tVS:Meridional wind, staggered ;\tVT:Meridional heat transport ;\tVTH2d:Meridional Heat Flux: 2D prj of zon. mean ;\tVTH3d:Meridional Heat Flux: 3D zon. mean ;\tVU:Meridional flux of zonal momentum ;\tVV:Meridional velocity squared ;\tW2d:Zonal-Mean vertical wind ;\tWAK:Aerosol single scattering albedo ;\tWET_BC:Wet deposition ;\tWET_DUST:Wet deposition ;\tWET_POM:Wet deposition ;\tWET_SO2:Wet deposition ;\tWET_SO4:Wet deposition ;\tWET_SS:Wet deposition ;\tWTH3d:Vertical Heat Flux: 3D zon. mean ;\tWTKE:Standard deviation of updraft velocity ;\tZ3:Geopotential Height (above sea level) ;\tcb_ozone_c:ozone column burden used in climate calculation ;\tcb_sulf_c:sulf column burden used in climate calculation ;\tSource = MICOM ; Variables =\t\ttime:time ;\tsealv:Sea level ;\tmaxmld:Maximum mixed layer depth ;\tsst:Ocean surface temperature ;\tSource = CLM ; Variables =\t\tlevgrnd:coordinate soil levels ;\tlevlak:coordinate lake levels ;\tedgen:northern edge of surface grid ;\tedgee:eastern edge of surface grid ;\tedges:southern edge of surface grid ;\tedgew:western edge of surface grid ;\ttime:time ;\tmcdate:current date (YYYYMMDD) ;\tmcsec:current seconds of current date ;\tmdcur:current day (from base day) ;\tmscur:current seconds of current day ;\tnstep:time step ;\ttime_bounds:history time interval endpoints ;\tlon:coordinate longitude ;\tlat:coordinate latitude ;\tlonatm:atm coordinate longitude ;\tlatatm:atm coordinate latitude ;\tlonrof:runoff coordinate longitude ;\tlatrof:runoff coordinate latitude ;\tlongxy:longitude ;\tlatixy:latitude ;\tarea:grid cell areas ;\tareaupsc:normalized grid cell areas related to upscaling ;\ttopo:grid cell topography ;\ttopodnsc:normalized grid cell topography related to downscaling ;\tlandfrac:land fraction ;\tlandmask:land/ocean mask (0.=ocean and 1.=land) ;\tpftmask:pft real/fake mask (0.=fake and 1.=real) ;\tindxupsc:upscaling atm global grid index ;\tlongxyatm:atm longitude ;\tlatixyatm:atm latitude ;\tareaatm:atm grid cell areas ;\tZSOI:soil depth ;\tDZSOI:soil thickness ;\tWATSAT:saturated soil water content (porosity) ;\tSUCSAT:saturated soil matric potential ;\tBSW:slope of soil water retention curve ;\tHKSAT:saturated hydraulic conductivity ;\tBCDEP:total BC deposition (dry+wet) from atmosphere ;\tBIOGENCO:biogenic CO flux ;\tBTRAN:transpiration beta factor ;\tBUILDHEAT:heat flux from urban building interior to walls and roof ;\tDSTDEP:total dust deposition (dry+wet) from atmosphere ;\tDSTFLXT:total surface dust emission ;\tEFLX_DYNBAL:dynamic land cover change conversion energy flux ;\tEFLX_LH_TOT_R:Rural total evaporation ;\tEFLX_LH_TOT_U:Urban total evaporation ;\tELAI:exposed one-sided leaf area index ;\tERRH2O:total water conservation error ;\tERRSEB:surface energy conservation error ;\tERRSOI:soil/lake energy conservation error ;\tERRSOL:solar radiation conservation error ;\tESAI:exposed one-sided stem area index ;\tFCEV:canopy evaporation ;\tFCOV:fractional impermeable area ;\tFCTR:canopy transpiration ;\tFGEV:ground evaporation ;\tFGR:heat flux into soil/snow including snow melt ;\tFGR12:heat flux between soil layers 1 and 2 ;\tFGR_R:Rural heat flux into soil/snow including snow melt ;\tFGR_U:Urban heat flux into soil/snow including snow melt ;\tFIRA:net infrared (longwave) radiation ;\tFIRA_R:Rural net infrared (longwave) radiation ;\tFIRA_U:Urban net infrared (longwave) radiation ;\tFIRE:emitted infrared (longwave) radiation ;\tFLDS:atmospheric longwave radiation ;\tFLUXFM2A:heat flux for rain to snow conversion ;\tFLUXFMLND:heat flux from rain to snow conversion ;\tFPSN:photosynthesis ;\tFSA:absorbed solar radiation ;\tFSAT:fractional area with water table at surface ;\tFSA_R:Rural absorbed solar radiation ;\tFSA_U:Urban absorbed solar radiation ;\tFSDS:atmospheric incident solar radiation ;\tFSDSND:direct nir incident solar radiation ;\tFSDSNDLN:direct nir incident solar radiation at local noon ;\tFSDSNI:diffuse nir incident solar radiation ;\tFSDSVD:direct vis incident solar radiation ;\tFSDSVDLN:direct vis incident solar radiation at local noon ;\tFSDSVI:diffuse vis incident solar radiation ;\tFSH:sensible heat ;\tFSH_G:sensible heat from ground ;\tFSH_NODYNLNDUSE:sensible heat ;\tFSH_R:Rural sensible heat ;\tFSH_U:Urban sensible heat ;\tFSH_V:sensible heat from veg ;\tFSM:snow melt heat flux ;\tFSM_R:Rural snow melt heat flux ;\tFSM_U:Urban snow melt heat flux ;\tFSNO:fraction of ground covered by snow ;\tFSR:reflected solar radiation ;\tFSRND:direct nir reflected solar radiation ;\tFSRNDLN:direct nir reflected solar radiation at local noon ;\tFSRNI:diffuse nir reflected solar radiation ;\tFSRVD:direct vis reflected solar radiation ;\tFSRVDLN:direct vis reflected solar radiation at local noon ;\tFSRVI:diffuse vis reflected solar radiation ;\tGC_HEAT1:initial gridcell total heat content ;\tGC_ICE1:initial gridcell total ice content ;\tGC_LIQ1:initial gridcell total liq content ;\tH2OCAN:intercepted water ;\tH2OSNO:snow depth (liquid water) ;\tH2OSNO_TOP:mass of snow in top snow layer ;\tH2OSOI:volumetric soil water ;\tHC:heat content of soil/snow/lake ;\tHCSOI:soil heat content ;\tHEAT_FROM_AC:sensible heat flux put into canyon due to heat removed from air conditioning ;\tISOPRENE:isoprene flux ;\tLAISHA:shaded projected leaf area index ;\tLAISUN:sunlit projected leaf area index ;\tMONOTERP:monoterpene flux ;\tOCDEP:total OC deposition (dry+wet) from atmosphere ;\tORVOC:other reactive VOC flux ;\tOVOC:other VOC flux ;\tPBOT:atmospheric pressure ;\tPCO2:atmospheric partial pressure of CO2 ;\tQ2M:2m specific humidity ;\tQBOT:atmospheric specific humidity ;\tQCHANR:RTM river flow: LIQ ;\tQCHANR_ICE:RTM river flow: ICE ;\tQCHARGE:aquifer recharge rate ;\tQCHOCNR:RTM river discharge into ocean: LIQ ;\tQCHOCNR_ICE:RTM river discharge into ocean: ICE ;\tQDRAI:sub-surface drainage ;\tQDRIP:throughfall ;\tQFLX_ICE_DYNBAL:ice dynamic land cover change conversion runoff flux ;\tQFLX_LIQ_DYNBAL:liq dynamic land cover change conversion runoff flux ;\tQINFL:infiltration ;\tQINTR:interception ;\tQMELT:snow melt ;\tQOVER:surface runoff ;\tQRGWL:surface runoff at glaciers (liquid only), wetlands, lakes ;\tQRUNOFF:total liquid runoff (does not include QSNWCPICE) ;\tQRUNOFF_NODYNLNDUSE:total liquid runoff (does not include QSNWCPICE) ;\tQRUNOFF_R:Rural total runoff ;\tQRUNOFF_U:Urban total runoff ;\tQSNWCPICE:excess snowfall due to snow capping ;\tQSNWCPICE_NODYNLNDUSE:excess snowfall due to snow capping ;\tQSOIL:ground evaporation ;\tQVEGE:canopy evaporation ;\tQVEGT:canopy transpiration ;\tRAIN:atmospheric rain ;\tRAINATM:atmospheric rain forcing ;\tRAINFM2A:land rain on atm grid ;\tRH2M:2m relative humidity ;\tRH2M_R:Rural 2m specific humidity ;\tRH2M_U:Urban 2m relative humidity ;\tSABG:solar rad absorbed by ground ;\tSABV:solar rad absorbed by veg ;\tSNOAERFRC2L:surface forcing of all aerosols in snow, averaged only when snow is present (land) ;\tSNOAERFRCL:surface forcing of all aerosols in snow (land) ;\tSNOBCFRC2L:surface forcing of BC in snow, averaged only when snow is present (land) ;\tSNOBCFRCL:surface forcing of BC in snow (land) ;\tSNOBCMCL:mass of BC in snow column ;\tSNOBCMSL:mass of BC in top snow layer ;\tSNODSTFRC2L:surface forcing of dust in snow, averaged only when snow is present (land) ;\tSNODSTFRCL:surface forcing of dust in snow (land) ;\tSNODSTMCL:mass of dust in snow column ;\tSNODSTMSL:mass of dust in top snow layer ;\tSNOOCFRC2L:surface forcing of OC in snow, averaged only when snow is present (land) ;\tSNOOCFRCL:surface forcing of OC in snow (land) ;\tSNOOCMCL:mass of OC in snow column ;\tSNOOCMSL:mass of OC in top snow layer ;\tSNOW:atmospheric snow ;\tSNOWATM:atmospheric snow forcing ;\tSNOWDP:snow height ;\tSNOWFM2A:land snow on atm grid ;\tSNOWICE:snow ice ;\tSNOWLIQ:snow liquid water ;\tSOILICE:soil ice ;\tSOILLIQ:soil liquid water ;\tSOILWATER_10CM:soil liquid water + ice in top 10cm of soil ;\tSoilAlpha:factor limiting ground evap ;\tSoilAlpha_U:urban factor limiting ground evap ;\tTAUX:zonal surface stress ;\tTAUY:meridional surface stress ;\tTBOT:atmospheric air temperature ;\tTBUILD:internal urban building temperature ;\tTG:ground temperature ;\tTG_R:Rural ground temperature ;\tTG_U:Urban ground temperature ;\tTHBOT:atmospheric air potential temperature ;\tTLAI:total projected leaf area index ;\tTLAKE:lake temperature ;\tTREFMNAV:daily minimum of average 2-m temperature ;\tTREFMNAV_R:Rural daily minimum of average 2-m temperature ;\tTREFMNAV_U:Urban daily minimum of average 2-m temperature ;\tTREFMXAV:daily maximum of average 2-m temperature ;\tTREFMXAV_R:Rural daily maximum of average 2-m temperature ;\tTREFMXAV_U:Urban daily maximum of average 2-m temperature ;\tTSA:2m air temperature ;\tTSAI:total projected stem area index ;\tTSA_R:Rural 2m air temperature ;\tTSA_U:Urban 2m air temperature ;\tTSOI:soil temperature ;\tTSOI_10CM:soil temperature in top 10cm of soil ;\tTV:vegetation temperature ;\tURBAN_AC:urban air conditioning flux ;\tURBAN_HEAT:urban heating flux ;\tVOCFLXT:total VOC flux into atmosphere ;\tWA:water in the unconfined aquifer ;\tWASTEHEAT:sensible heat flux from heating/cooling sources of urban waste heat ;\tWIND:atmospheric wind velocity magnitude ;\tWT:total water storage (unsaturated soil water + groundwater) ;\tZBOT:atmospheric reference height ;\tZWT:water table depth ;\tSource = CICE ; Variables =\t\ttime:model time ;\ttime_bounds:boundaries for time-averaging interval ;\tTLON:T grid center longitude ;\tTLAT:T grid center latitude ;\tULON:U grid center longitude ;\tULAT:U grid center latitude ;\ttmask:ocean grid mask ;\ttarea:area of T grid cells ;\tuarea:area of U grid cells ;\tdxt:T cell width through middle ;\tdyt:T cell height through middle ;\tdxu:U cell width through middle ;\tdyu:U cell height through middle ;\tHTN:T cell width on North side ;\tHTE:T cell width on East side ;\tANGLE:angle grid makes with latitude line on U grid ;\tANGLET:angle grid makes with latitude line on T grid ;\tlont_bounds:longitude boundaries of T cells ;\tlatt_bounds:latitude boundaries of T cells ;\tlonu_bounds:longitude boundaries of U cells ;\tlatu_bounds:latitude boundaries of U cells ;\tTsfc:snow/ice surface temperature ;\tqi:internal ice heat content ;\tqs:internal snow heat content ;\ttransix:ice mass transport (x) on East side ;\ttransiy:ice mass transport (y) on North side ;\tfswdn:down solar flux ;\tfswdn_ai:down solar flux weighted with respect to ice area ;\tfswup:upward solar flux ;\tfswup_ai:upward solar flux weighted with sea ice area ;\tflwdn:down longwave flux ;\tflwdn_ai:down longwave flux weighted with respect to ice area ;\tsnow:snowfall rate (cpl) ;\tsnow_ai:snowfall rate ;\train:rainfall rate (cpl) ;\train_ai:rainfall rate ;\tfswfac:shortwave scaling factor ;\tfswabs:snow/ice/ocn absorbed solar flux (cpl) ;\tfswabs_ai:snow/ice/ocn absorbed solar flux ;\talvdr:visible direct albedo ;\talidr:near IR direct albedo ;\talbice:bare ice albedo ;\talbsno:snow albedo ;\talbpnd:melt pond albedo ;\tcoszen:cosine of the zenith angle ;\tflat:latent heat flux (cpl) ;\tflat_ai:latent heat flux ;\tfsens:sensible heat flux (cpl) ;\tfsens_ai:sensible heat flux ;\tflwup:upward longwave flux (cpl) ;\tflwup_ai:upward longwave flux ;\tevap:evaporative water flux (cpl) ;\tevap_ai:evaporative water flux ;\tTair:air temperature ;\tTref:2m reference temperature ;\tQref:2m reference specific humidity ;\tmelts:snow melt ;\tfswthru:SW thru ice to ocean (cpl) ;\tfswthru_ai:SW flux thru ice to ocean ;\tdardg1dt:ice area ridging rate ;\tdardg2dt:ridge area formation rate ;\tdvirdgdt:ice volume ridging rate ;\thisnap:ice volume snapshot ;\taisnap:ice area snapshot ;\ttrsig:internal stress tensor trace ;\tice_present:fraction of time-avg interval that any ice is present ;\tfsurf_ai:net surface heat flux ;\tfcondtop_ai:top surface conductive heat flux ;\talvl:level ice area fraction ;\tvlvl:level ice mean thickness ;\tardg:ridged ice area fraction ;\tvrdg:ridged ice mean thickness ;\tCitation: Graff etal., 2019; LINK: http://doi.org/10.5194/esd-10-569-2019, 2019" } ], "http://schema.org/encodingFormat" : [ { "@value" : "application/ld+json" } ], "http://schema.org/hasPart" : [ { "@id" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7/folders/4d76a179-3214-43f7-8fed-d2e8c65fe728" }, { "@id" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7/folders/90fc2389-bb55-4a2f-9dd7-8f4736924bd6" }, { "@id" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7/folders/c126899e-13bd-485d-aa62-d69e33753c8a" }, { "@id" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7/folders/cc1a4467-e35a-42c4-a8cd-97c4d68be36e" } ], "http://schema.org/identifier" : [ { "@value" : "https://w3id.org/ro-id/2201ca0d-8df7-410d-879f-c17040d1fcf7" } ], "http://schema.org/license" : [ { "@id" : "https://choosealicense.com/no-permission/" } ], "http://schema.org/name" : [ { "@value" : "NorESM1 1 degree resolution coupled simulations for HappiEVA project" } ], "http://w3id.org/ro-id/rohub/model#creation_mode" : [ { "@value" : "MANUAL" } ], "http://w3id.org/ro/earth-science#Concept" : [ { "@value" : "cloud" }, { "@value" : "flux" }, { "@value" : "horizontal" }, { "@value" : "humidity" }, { "@value" : "model" }, { "@value" : "project" }, { "@value" : "rain" }, { "@value" : "screen resolution" }, { "@value" : "simulation" }, { "@value" : "snow" }, { "@value" : "solar radiation" }, { "@value" : "temperature" } ], "http://w3id.org/ro/earth-science#FieldOfResearch" : [ { "@value" : "earth sciences" } ], "http://w3id.org/ro/earth-science#IPTC" : [ { "@value" : "Weather statistic" }, { "@value" : "Weather" } ], "http://w3id.org/ro/earth-science#Lemma" : [ { "@value" : "Happi" }, { "@value" : "HappiEVA" }, { "@value" : "NorESM1" }, { "@value" : "cloud" }, { "@value" : "flux" }, { "@value" : "heat flux" }, { "@value" : "humidity" }, { "@value" : "model" }, { "@value" : "project" }, { "@value" : "rain" }, { "@value" : "resolution" }, { "@value" : "simulation" }, { "@value" : "snow" }, { "@value" : "temperature" } ], "http://w3id.org/ro/earth-science#NASA" : [ { "@value" : "geosciences" } ], "http://w3id.org/ro/earth-science#Phrase" : [ { "@value" : "couple simulation" }, { "@value" : "coupled simulation" }, { "@value" : "horizontal resolution" }, { "@value" : "ice surface temperature" }, { "@value" : "simulations for HappiEVA" }, { "@value" : "snow albedo" }, { "@value" : "snow column" }, { "@value" : "snow ice" }, { "@value" : "snow melt" }, { "@value" : "version of NorESM1-m" } ], "http://w3id.org/ro/earth-science#Sentence" : [ { "@value" : "Data description: Source = CAM; Variables = P0:reference pressure; lat:latitude; lon:longitude; slat:staggered latitude; slon:staggered longitude; w_stag:staggered latitude weights; lev:hybrid level at midpoints (1000* A+B); ilev:hybrid level at interfaces (1000* A+B); isccp_prs:Mean ISCCP pressure; isccp_tau:Mean ISCCP optical depth; isccp_prstau:Mean pressure (mb) mean optical depth (unitless) 1000; time:time; time_bnds:time interval endpoints; ntrm:spectral truncation parameter M; ntrn:spectral truncation parameter N; ntrk:spectral truncation parameter K; ndbase:base day; nsbase:seconds of base day; nbdate:base date (YYYYMMDD); nbsec:seconds of base date; mdt:timestep; nlon:number of longitudes; wnummax:cutoff Fourier wavenumber; hyai:hybrid A coefficient at layer interfaces; hybi:hybrid B coefficient at layer interfaces; hyam:hybrid A coefficient at layer midpoints; hybm:hybrid B coefficient at layer midpoints; gw:gauss weights; ndcur:current day (from base day); nscur:current seconds of current day; date:current date (YYYYMMDD); co2vmr:co2 volume mixing ratio; ch4vmr:ch4 volume mixing ratio; n2ovmr:n2o volume mixing ratio; f11vmr:f11 volume mixing ratio; f12vmr:f12 volume mixing ratio; sol_tsi:total solar irradiance; datesec:current seconds of current date; nsteph:current timestep; ABSVIS:Aerosol absorptive optical depth at 0.35-0.64um; AEROD_v:Total Aerosol Optical Depth in visible band; AKCXS:Scheme excess aerosol mass burden; AODVIS:Aerosol optical depth at 0.35-0.64um; BAK:Aerosol extinction; BC:Concentration; BC_A:BC_A; BC_AC:BC_AC; BC_AI:BC_AI; BC_AX:BC_AX; BC_N:BC_N; BC_NI:BC_NI; CABSVIS:Clear air aerosol absorptive optical depth; CAODVIS:Clear air aerosol optical depth; CDNC:Cloud Droplet Number Concentration; CDNCINT:Cloud Droplet Number Column; CDNCIX:Aerosol calc cloud droplet number concentration; CH2O2:H2O2 MMR from file; CLDFOC:Frequency of Warm Cloud Occurence; CLDFREE:Cloud free fraction wrt CAODVIS and CABSVIS; CLDHGH:Vertically-integrated high cloud; CLDICE:Grid box averaged cloud ice amount; CLDLIQ:Grid box averaged cloud liquid amount; CLDLIX:Aerosol calc averaged liquid condensate amount; CLDLOW:Vertically-integrated low cloud; CLDMED:Vertically-integrated mid-level cloud; CLDTOT:Vertically-integrated total cloud; CLOUD:Cloud fraction; CMFDQ:QV tendency - shallow convection; CMFDQR:Q tendency - shallow convection rainout; CMFDT:T tendency - shallow convection; CMFMC:Moist shallow convection mass flux; CMFMCDZM:Convection mass flux from ZM deep; CONCLD:Convective cloud cover; C_BC:Column burden; C_DMS:Column burden; C_DUST:Column burden; C_POM:Column burden; C_SO2:Column burden; C_SO4:Column burden; C_SS:Column burden; DAYFOC:Daylight fraction; DCQ:Q tendency due to moist processes; DMS:DMS; DMSCO:Concentration; DRY_BC:Dry deposition; DRY_DUST:Dry deposition; DRY_POM:Dry deposition; DRY_SO2:Dry deposition; DRY_SO4:Dry deposition; DRY_SS:Dry deposition; DST_A2:DST_A2; DST_A3:DST_A3; DTCOND:T tendency - moist processes; DTV:T vertical diffusion; DUST:Concentration; EMI_BC:Emissions; EMI_DMS:Emissions; EMI_DUST:Emissions; EMI_POM:Emissions; EMI_SO2:Emissions; EMI_SO4:Emissions; EMI_SS:Emissions; EVAPX:Evaporation of cloud droplets; FICE:Fractional ice content within cloud; FLDS:Downwelling longwave flux at surface; FLDSC:Clearsky downwelling longwave flux at surface; FLNS:Net longwave flux at surface; FLNSC:Clearsky net longwave flux at surface; FLNT:Net longwave flux at top of model; FLNTC:Clearsky net longwave flux at top of model; FLUT:Upwelling longwave flux at top of model; FLUTC:Clearsky upwelling longwave flux at top of model; FOCHANA:Frequency of Occurrence of Clouds with REHANA / 0; FREEZ: rate of freezing of cloud droplets; FREQSH:Fractional occurance of shallow convection; FREQZM:Fractional occurance of ZM convection; FSDS:Downwelling solar flux at surface; FSDSC:Clearsky downwelling solar flux at surface; FSNS:Net solar flux at surface; FSNSC:Clearsky net solar flux at surface; FSNT:Net solar flux at top of model; FSNTC:Clearsky net solar flux at top of model; FSNTOA:Net solar flux at top of atmosphere; FSNTOAC:Clearsky net solar flux at top of atmosphere; FSUTOA:Upwelling solar flux at top of atmosphere; GAK:Aerosol assymetry factor; GCLDLWP:Grid-box cloud water path; H2O2:H2O2; ICEFRAC:Fraction of sfc area covered by sea-ice; ICLDIWP:In-cloud ice water path; ICLDTWP:In-cloud cloud total water path (liquid and ice); ICLDTWX:In-cloud cloud total water path (liquid and ice); ICWMRX:Prognostic in-cloud water mixing ratio; KHET:Aqueous-phase reaction rate; LANDFRAC:Fraction of sfc area covered by land; LCLOUD:Liquid cloud fraction; LHFLX:Surface latent heat flux; LWCF:Longwave cloud forcing; MSAGA:MSA gas-phase prod; MSKtem:TEM mask; NDROPCOL:Column droplet number; NDROPMIX:Droplet number mixing; NDROPSNK:Droplet number loss by microphysics; NDROPSRC:Droplet number source; NRAINX:Loss of cloud droplets due to precip; NUCRAT:Nucleation of cloud droplets; NUSO4N:SO4 nucleation rate; N_AER:Aerosol number concentration; N_AERORG:Aerosol number concentration; OCNFRAC:Fraction of sfc area covered by ocean; ODV_SSLTA:SSLTA optical depth in visible band; ODV_SSLTC:SSLTC optical depth in visible band; ODV_VOLC_MMR:VOLC_MMR optical depth in visible band; ODV_bcar1:bcar1 optical depth in visible band; ODV_bcar2:bcar2 optical depth in visible band; ODV_dust1:dust1 optical depth in visible band; ODV_dust2:dust2 optical depth in visible band; ODV_dust3:dust3 optical depth in visible band; ODV_dust4:dust4 optical depth in visible band; ODV_ocar1:ocar1 optical depth in visible band; ODV_ocar2:ocar2 optical depth in visible band; ODV_sulf:sulf optical depth in visible band; OMEGA:Vertical velocity (pressure); OMEGAT:Vertical heat flux; OM_AC:OM_AC; OM_AI:OM_AI; OM_NI:OM_NI; PBLH:PBL height; PCONVB:convection base pressure; PCONVT:convection top pressure; PHIS:Surface geopotential; POM:Concentration; PRECC:Convective precipitation rate (liq + ice); PRECCDZM:Convective precipitation rate from ZM deep; PRECL:Large-scale (stable) precipitation rate (liq + ice); PRECSC:Convective snow rate (water equivalent); PRECSH:Shallow Convection precipitation rate; PRECSL:Large-scale (stable) snow rate (water equivalent); PRECT:Total (convective and large-scale) precipitation rate (liq + ice); PS:Surface pressure; PSL:Sea level pressure; Q:Specific humidity; QC:Q tendency - shallow convection LW export; QFLX:Surface water flux; QREFHT:Reference height humidity; QRL:Longwave heating rate; QRS:Solar heating rate; REFFL:Effective Radius of Cloud Droplets; REHANA:Effective radius as seen from satellite; RELH:Fictive relative humidity; RELHUM:Relative humidity; RHREFHT:Reference height relative humidity; S2GA:SO2 gas-phase prod; S4AQ:Sulphate aq.phase prod; S4GA:Sulphate gas-phase prod; SELFX:Selfcollection of cloud droplets; SFCDNCIX:CDNCIX surface flux; SFCLDICE:CLDICE surface flux; SFCLDLIQ:CLDLIQ surface flux; SFCLDLIX:CLDLIX surface flux; SHFLX:Surface sensible heat flux; SNOWHICE:Water equivalent snow depth; SNOWHLND:Water equivalent snow depth; SO2:SO2; SO2CO:Concentration; SO4:Concentration; SO4_A1:SO4_A1; SO4_A2:SO4_A2; SO4_AC:SO4_AC; SO4_N:SO4_N; SO4_NA:SO4_NA; SO4_PR:SO4_PR; SOLIN:Solar insolation; SOLLD:Solar downward near infrared diffuse to surface; SOLSD:Solar downward visible diffuse to surface; SRFRAD:Net radiative flux at surface; SS:Concentration; SST:sea surface temperature; SS_A1:SS_A1; SS_A2:SS_A2; SS_A3:SS_A3; SUPERSAT:Supersaturation from AGR schem; SWCF:Shortwave cloud forcing; T:Temperature; TAUX:Zonal surface stress; TAUY:Meridional surface stress; TGCLDIWP:Total grid-box cloud ice water path; TGCLDLWP:Total grid-box cloud liquid water path; TGCLDLWX:Offline grid-box cloud liquid water path; TH:Potential Temperature; TH2d:Zonal-Mean potential temp; TMQ:Total (vertically integrated) precipitatable water; TREFHT:Reference height temperature; TREFMNAV:Average of TREFHT daily minimum; TREFMXAV:Average of TREFHT daily maximum; TROP_P:Tropopause Pressure; TROP_T:Tropopause Temperature; TROP_Z:Tropopause Height; TS:Surface temperature (radiative); TSMN:Minimum surface temperature over output period; TSMX:Maximum surface temperature over output period; U:Zonal wind; U10:10m wind speed; U2d:Zonal-Mean zonal wind; UAS:Eastward 10m wind; US:Zonal wind, staggered; UTGWORO:U tendency - orographic gravity wave drag; UU:Zonal velocity squared; UV2d:Meridional Flux of Zonal Momentum: 2D prj of zon. mean; UV3d:Meridional Flux of Zonal Momentum: 3D zon. mean; UW2d:Vertical Flux of Zonal Momentum; 2D prj of zon. mean; UW3d:Vertical Flux of Zonal Momentum: 3D zon. mean; V:Meridional wind; V2d:Zonal-Mean meridional wind; VAS:Northward 10m wind; VD01:Vertical diffusion of Q; VQ:Meridional water transport; VS:Meridional wind, staggered; VT:Meridional heat transport; VTH2d:Meridional Heat Flux: 2D prj of zon. mean; VTH3d:Meridional Heat Flux: 3D zon. mean; VU:Meridional flux of zonal momentum; VV:Meridional velocity squared; W2d:Zonal-Mean vertical wind; WAK:Aerosol single scattering albedo; WET_BC:Wet deposition; WET_DUST:Wet deposition; WET_POM:Wet deposition; WET_SO2:Wet deposition; WET_SO4:Wet deposition; WET_SS:Wet deposition; WTH3d:Vertical Heat Flux: 3D zon. mean; WTKE:Standard deviation of updraft velocity; Z3:Geopotential Height (above sea level); cb_ozone_c:ozone column burden used in climate calculation; cb_sulf_c:sulf column burden used in climate calculation; Source = MICOM; Variables = time:time; sealv:Sea level; maxmld:Maximum mixed layer depth; sst:Ocean surface temperature; Source = CLM; Variables = levgrnd:coordinate soil levels; levlak:coordinate lake levels; edgen:northern edge of surface grid; edgee:eastern edge of surface grid; edges:southern edge of surface grid; edgew:western edge of surface grid; time:time; mcdate:current date (YYYYMMDD); mcsec:current seconds of current date; mdcur:current day (from base day); mscur:current seconds of current day; nstep:time step; time_bounds:history time interval endpoints; lon:coordinate longitude; lat:coordinate latitude; lonatm:atm coordinate longitude; latatm:atm coordinate latitude; lonrof:runoff coordinate longitude; latrof:runoff coordinate latitude; longxy:longitude; latixy:latitude; area:grid cell areas; areaupsc:normalized grid cell areas related to upscaling; topo:grid cell topography; topodnsc:normalized grid cell topography related to downscaling; landfrac:land fraction; landmask:land/ocean mask (0. ocean and 1. land); pftmask:pft real/fake mask (0. fake and 1. real); indxupsc:upscaling atm global grid index; longxyatm:atm longitude; latixyatm:atm latitude; areaatm:atm grid cell areas; ZSOI:soil depth; DZSOI:soil thickness; WATSAT:saturated soil water content (porosity); SUCSAT:saturated soil matric potential; BSW:slope of soil water retention curve; HKSAT:saturated hydraulic conductivity; BCDEP:total BC deposition (dry+wet) from atmosphere; BIOGENCO:biogenic CO flux; BTRAN:transpiration beta factor; BUILDHEAT:heat flux from urban building interior to walls and roof; DSTDEP:total dust deposition (dry+wet) from atmosphere; DSTFLXT:total surface dust emission; EFLX_DYNBAL:dynamic land cover change conversion energy flux; EFLX_LH_TOT_R:Rural total evaporation; EFLX_LH_TOT_U:Urban total evaporation; ELAI:exposed one-sided leaf area index; ERRH2O:total water conservation error; ERRSEB:surface energy conservation error; ERRSOI:soil/lake energy conservation error; ERRSOL:solar radiation conservation error; ESAI:exposed one-sided stem area index; FCEV:canopy evaporation; FCOV:fractional impermeable area; FCTR:canopy transpiration; FGEV:ground evaporation; FGR:heat flux into soil/snow including snow melt; FGR12:heat flux between soil layers 1 and 2; FGR_R:Rural heat flux into soil/snow including snow melt; FGR_U:Urban heat flux into soil/snow including snow melt; FIRA:net infrared (longwave) radiation; FIRA_R:Rural net infrared (longwave) radiation; FIRA_U:Urban net infrared (longwave) radiation; FIRE:emitted infrared (longwave) radiation; FLDS:atmospheric longwave radiation; FLUXFM2A:heat flux for rain to snow conversion; FLUXFMLND:heat flux from rain to snow conversion; FPSN:photosynthesis; FSA:absorbed solar radiation; FSAT:fractional area with water table at surface; FSA_R:Rural absorbed solar radiation; FSA_U:Urban absorbed solar radiation; FSDS:atmospheric incident solar radiation; FSDSND:direct nir incident solar radiation; FSDSNDLN:direct nir incident solar radiation at local noon; FSDSNI:diffuse nir incident solar radiation; FSDSVD:direct vis incident solar radiation; FSDSVDLN:direct vis incident solar radiation at local noon; FSDSVI:diffuse vis incident solar radiation; FSH:sensible heat; FSH_G:sensible heat from ground; FSH_NODYNLNDUSE:sensible heat; FSH_R:Rural sensible heat; FSH_U:Urban sensible heat; FSH_V:sensible heat from veg; FSM:snow melt heat flux; FSM_R:Rural snow melt heat flux; FSM_U:Urban snow melt heat flux; FSNO:fraction of ground covered by snow; FSR:reflected solar radiation; FSRND:direct nir reflected solar radiation; FSRNDLN:direct nir reflected solar radiation at local noon; FSRNI:diffuse nir reflected solar radiation; FSRVD:direct vis reflected solar radiation; FSRVDLN:direct vis reflected solar radiation at local noon; FSRVI:diffuse vis reflected solar radiation; GC_HEAT1:initial gridcell total heat content; GC_ICE1:initial gridcell total ice content; GC_LIQ1:initial gridcell total liq content; H2OCAN:intercepted water; H2OSNO:snow depth (liquid water); H2OSNO_TOP:mass of snow in top snow layer; H2OSOI:volumetric soil water; HC:heat content of soil/snow/lake; HCSOI:soil heat content; HEAT_FROM_AC:sensible heat flux put into canyon due to heat removed from air conditioning; ISOPRENE:isoprene flux; LAISHA:shaded projected leaf area index; LAISUN:sunlit projected leaf area index; MONOTERP:monoterpene flux; OCDEP:total OC deposition (dry+wet) from atmosphere; ORVOC:other reactive VOC flux; OVOC:other VOC flux; PBOT:atmospheric pressure; PCO2:atmospheric partial pressure of CO2; Q2M:2m specific humidity; QBOT:atmospheric specific humidity; QCHANR:RTM river flow: LIQ; QCHANR_ICE:RTM river flow: ICE; QCHARGE:aquifer recharge rate; QCHOCNR:RTM river discharge into ocean: LIQ; QCHOCNR_ICE:RTM river discharge into ocean: ICE; QDRAI:sub-surface drainage; QDRIP:throughfall; QFLX_ICE_DYNBAL:ice dynamic land cover change conversion runoff flux; QFLX_LIQ_DYNBAL:liq dynamic land cover change conversion runoff flux; QINFL:infiltration; QINTR:interception; QMELT:snow melt; QOVER:surface runoff; QRGWL:surface runoff at glaciers (liquid only) wetlands, lakes; QRUNOFF:total liquid runoff (does not include QSNWCPICE); QRUNOFF_NODYNLNDUSE:total liquid runoff (does not include QSNWCPICE); QRUNOFF_R:Rural total runoff; QRUNOFF_U:Urban total runoff; QSNWCPICE:excess snowfall due to snow capping; QSNWCPICE_NODYNLNDUSE:excess snowfall due to snow capping; QSOIL:ground evaporation; QVEGE:canopy evaporation; QVEGT:canopy transpiration; RAIN:atmospheric rain; RAINATM:atmospheric rain forcing; RAINFM2A:land rain on atm grid; RH2M:2m relative humidity; RH2M_R:Rural 2m specific humidity; RH2M_U:Urban 2m relative humidity; SABG:solar rad absorbed by ground; SABV:solar rad absorbed by veg; SNOAERFRC2L:surface forcing of all aerosols in snow, averaged only when snow is present (land); SNOAERFRCL:surface forcing of all aerosols in snow (land); SNOBCFRC2L:surface forcing of BC in snow, averaged only when snow is present (land); SNOBCFRCL:surface forcing of BC in snow (land); SNOBCMCL:mass of BC in snow column; SNOBCMSL:mass of BC in top snow layer; SNODSTFRC2L:surface forcing of dust in snow, averaged only when snow is present (land); SNODSTFRCL:surface forcing of dust in snow (land); SNODSTMCL:mass of dust in snow column; SNODSTMSL:mass of dust in top snow layer; SNOOCFRC2L:surface forcing of OC in snow, averaged only when snow is present (land); SNOOCFRCL:surface forcing of OC in snow (land); SNOOCMCL:mass of OC in snow column; SNOOCMSL:mass of OC in top snow layer; SNOW:atmospheric snow; SNOWATM:atmospheric snow forcing; SNOWDP:snow height; SNOWFM2A:land snow on atm grid; SNOWICE:snow ice; SNOWLIQ:snow liquid water; SOILICE:soil ice; SOILLIQ:soil liquid water; SOILWATER_10CM:soil liquid water + ice in top 10cm of soil; SoilAlpha:factor limiting ground evap; SoilAlpha_U:urban factor limiting ground evap; TAUX:zonal surface stress; TAUY:meridional surface stress; TBOT:atmospheric air temperature; TBUILD:internal urban building temperature; TG:ground temperature; TG_R:Rural ground temperature; TG_U:Urban ground temperature; THBOT:atmospheric air potential temperature; TLAI:total projected leaf area index; TLAKE:lake temperature; TREFMNAV:daily minimum of average 2-m temperature; TREFMNAV_R:Rural daily minimum of average 2-m temperature; TREFMNAV_U:Urban daily minimum of average 2-m temperature; TREFMXAV:daily maximum of average 2-m temperature; TREFMXAV_R:Rural daily maximum of average 2-m temperature; TREFMXAV_U:Urban daily maximum of average 2-m temperature; TSA:2m air temperature; TSAI:total projected stem area index; TSA_R:Rural 2m air temperature; TSA_U:Urban 2m air temperature; TSOI:soil temperature; TSOI_10CM:soil temperature in top 10cm of soil; TV:vegetation temperature; URBAN_AC:urban air conditioning flux; URBAN_HEAT:urban heating flux; VOCFLXT:total VOC flux into atmosphere; WA:water in the unconfined aquifer; WASTEHEAT:sensible heat flux from heating/cooling sources of urban waste heat; WIND:atmospheric wind velocity magnitude; WT:total water storage (unsaturated soil water + groundwater); ZBOT:atmospheric reference height; ZWT:water table depth; Source = CICE; Variables = time:model time; time_bounds:boundaries for time-averaging interval; TLON:T grid center longitude; TLAT:T grid center latitude; ULON:U grid center longitude; ULAT:U grid center latitude; tmask:ocean grid mask; tarea:area of T grid cells; uarea:area of U grid cells; dxt:T cell width through middle; dyt:T cell height through middle; dxu:U cell width through middle; dyu:U cell height through middle; HTN:T cell width on North side; HTE:T cell width on East side; ANGLE:angle grid makes with latitude line on U grid; ANGLET:angle grid makes with latitude line on T grid; lont_bounds:longitude boundaries of T cells; latt_bounds:latitude boundaries of T cells; lonu_bounds:longitude boundaries of U cells; latu_bounds:latitude boundaries of U cells; Tsfc:snow/ice surface temperature; qi:internal ice heat content; qs:internal snow heat content; transix:ice mass transport (x) on East side; transiy:ice mass transport (y) on North side; fswdn:down solar flux; fswdn_ai:down solar flux weighted with respect to ice area; fswup:upward solar flux; fswup_ai:upward solar flux weighted with sea ice area; flwdn:down longwave flux; flwdn_ai:down longwave flux weighted with respect to ice area; snow:snowfall rate (cpl); snow_ai:snowfall rate; rain:rainfall rate (cpl); rain_ai:rainfall rate; fswfac:shortwave scaling factor; fswabs:snow/ice/ocn absorbed solar flux (cpl); fswabs_ai:snow/ice/ocn absorbed solar flux; alvdr:visible direct albedo; alidr:near IR direct albedo; albice:bare ice albedo; albsno:snow albedo; albpnd:melt pond albedo; coszen:cosine of the zenith angle; flat:latent heat flux (cpl); flat_ai:latent heat flux; fsens:sensible heat flux (cpl); fsens_ai:sensible heat flux; flwup:upward longwave flux (cpl); flwup_ai:upward longwave flux; evap:evaporative water flux (cpl); evap_ai:evaporative water flux; Tair:air temperature; Tref:2m reference temperature; Qref:2m reference specific humidity; melts:snow melt; fswthru:SW thru ice to ocean (cpl); fswthru_ai:SW flux thru ice to ocean; dardg1dt:ice area ridging rate; dardg2dt:ridge area formation rate; dvirdgdt:ice volume ridging rate; hisnap:ice volume snapshot; aisnap:ice area snapshot; trsig:internal stress tensor trace; ice_present:fraction of time-avg interval that any ice is present; fsurf_ai:net surface heat flux; fcondtop_ai:top surface conductive heat flux; alvl:level ice area fraction; vlvl:level ice mean thickness; ardg:ridged ice area fraction; vrdg:ridged ice mean thickness; Citation: Graff etal." }, { "@value" : "The dataset includes DECK; 3 historical ensemble member; RCP26,RCP45,RCP85 scenarios;DAMIP;simulation with full Aerocom output: Stabilization scenarios, i.e. model runs that stabilize the warming to 1.5 and 2 degrees" }, { "@value" : "This is a slightly modified version of NorESM1-M used for CMIP5 and with 1 degree atmospheric horizontal resolution." } ], "https://w3id.org/contentdesc#Domain" : [ { "@value" : "astronomy" }, { "@value" : "physics" } ], "https://w3id.org/contentdesc#Organization" : [ { "@value" : "Financial Services Authority" }, { "@value" : "Fundamentalist Church of Jesus Christ of Latter Day Saints" }, { "@value" : "Transportation Security Administration" } ], "https://w3id.org/contentdesc#Place" : [ { "@value" : "British Columbia" }, { "@value" : "Quebec" }, { "@value" : "United States of America" }, { "@value" : "Vermont" }, { "@value" : "Washington State" } ], "https://www.w3.org/ns/iana/link-relations/relation#cite-as" : [ { "@value" : "Øyvind Seland. \"NorESM1 1 degree resolution coupled simulations for HappiEVA project.\" ROHub. 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(2020).NorESM1 1 degree resolution coupled simulations for HappiEVA project [Data set]. Norstore. https://doi.org/10.11582/2020.00021" } ], "http://purl.org/dc/terms/rightsHolder" : [ { "@value" : "Øyvind Seland" } ], "http://purl.org/dc/terms/type" : [ { "@value" : "Simulation" } ], "http://schema.org/author" : [ { "@id" : "mailto:georgehadib@gmail.com" } ], "http://schema.org/contentUrl" : [ { "@value" : "https://archive.sigma2.no/pages/public/datasetDetail.jsf?id=10.11582/2020.00021" } ], "http://schema.org/creator" : [ { "@id" : "mailto:georgehadib@gmail.com" } ], "http://schema.org/dateCreated" : [ { "@value" : "2020-04-01 00:00:00" } ], "http://schema.org/dateModified" : [ { "@value" : "2022-03-22 02:44:24.888778+00:00" } ], "http://schema.org/description" : [ { "@value" : "Results from coupled simulations of NorESM1-Happi model. This is a slightly modified version of NorESM1-M used for CMIP5 and with 1 degree atmospheric horizontal resolution. The dataset includes DECK; 3 historical ensemble member; RCP26,RCP45,RCP85 scenarios;DAMIP;simulation with full Aerocom output: Stabilization scenarios, i.e. model runs that stabilize the warming to 1.5 and 2 degrees\n Data description: Source = CAM ; Variables =\t\tP0:reference pressure ;\tlat:latitude ;\tlon:longitude ;\tslat:staggered latitude ;\tslon:staggered longitude ;\tw_stag:staggered latitude weights ;\tlev:hybrid level at midpoints (1000*(A+B)) ;\tilev:hybrid level at interfaces (1000*(A+B)) ;\tisccp_prs:Mean ISCCP pressure ;\tisccp_tau:Mean ISCCP optical depth ;\tisccp_prstau:Mean pressure (mb).mean optical depth (unitless)/1000 ;\ttime:time ;\ttime_bnds:time interval endpoints ;\tntrm:spectral truncation parameter M ;\tntrn:spectral truncation parameter N ;\tntrk:spectral truncation parameter K ;\tndbase:base day ;\tnsbase:seconds of base day ;\tnbdate:base date (YYYYMMDD) ;\tnbsec:seconds of base date ;\tmdt:timestep ;\tnlon:number of longitudes ;\twnummax:cutoff Fourier wavenumber ;\thyai:hybrid A coefficient at layer interfaces ;\thybi:hybrid B coefficient at layer interfaces ;\thyam:hybrid A coefficient at layer midpoints ;\thybm:hybrid B coefficient at layer midpoints ;\tgw:gauss weights ;\tndcur:current day (from base day) ;\tnscur:current seconds of current day ;\tdate:current date (YYYYMMDD) ;\tco2vmr:co2 volume mixing ratio ;\tch4vmr:ch4 volume mixing ratio ;\tn2ovmr:n2o volume mixing ratio ;\tf11vmr:f11 volume mixing ratio ;\tf12vmr:f12 volume mixing ratio ;\tsol_tsi:total solar irradiance ;\tdatesec:current seconds of current date ;\tnsteph:current timestep ;\tABSVIS:Aerosol absorptive optical depth at 0.35-0.64um ;\tAEROD_v:Total Aerosol Optical Depth in visible band ;\tAKCXS:Scheme excess aerosol mass burden ;\tAODVIS:Aerosol optical depth at 0.35-0.64um ;\tBAK:Aerosol extinction ;\tBC:Concentration ;\tBC_A:BC_A ;\tBC_AC:BC_AC ;\tBC_AI:BC_AI ;\tBC_AX:BC_AX ;\tBC_N:BC_N ;\tBC_NI:BC_NI ;\tCABSVIS:Clear air aerosol absorptive optical depth ;\tCAODVIS:Clear air aerosol optical depth ;\tCDNC:Cloud Droplet Number Concentration ;\tCDNCINT:Cloud Droplet Number Column ;\tCDNCIX:Aerosol calc cloud droplet number concentration ;\tCH2O2:H2O2 MMR from file ;\tCLDFOC:Frequency of Warm Cloud Occurence ;\tCLDFREE:Cloud free fraction wrt CAODVIS and CABSVIS ;\tCLDHGH:Vertically-integrated high cloud ;\tCLDICE:Grid box averaged cloud ice amount ;\tCLDLIQ:Grid box averaged cloud liquid amount ;\tCLDLIX:Aerosol calc averaged liquid condensate amount ;\tCLDLOW:Vertically-integrated low cloud ;\tCLDMED:Vertically-integrated mid-level cloud ;\tCLDTOT:Vertically-integrated total cloud ;\tCLOUD:Cloud fraction ;\tCMFDQ:QV tendency - shallow convection ;\tCMFDQR:Q tendency - shallow convection rainout ;\tCMFDT:T tendency - shallow convection ;\tCMFMC:Moist shallow convection mass flux ;\tCMFMCDZM:Convection mass flux from ZM deep ;\tCONCLD:Convective cloud cover ;\tC_BC:Column burden ;\tC_DMS:Column burden ;\tC_DUST:Column burden ;\tC_POM:Column burden ;\tC_SO2:Column burden ;\tC_SO4:Column burden ;\tC_SS:Column burden ;\tDAYFOC:Daylight fraction ;\tDCQ:Q tendency due to moist processes ;\tDMS:DMS ;\tDMSCO:Concentration ;\tDRY_BC:Dry deposition ;\tDRY_DUST:Dry deposition ;\tDRY_POM:Dry deposition ;\tDRY_SO2:Dry deposition ;\tDRY_SO4:Dry deposition ;\tDRY_SS:Dry deposition ;\tDST_A2:DST_A2 ;\tDST_A3:DST_A3 ;\tDTCOND:T tendency - moist processes ;\tDTV:T vertical diffusion ;\tDUST:Concentration ;\tEMI_BC:Emissions ;\tEMI_DMS:Emissions ;\tEMI_DUST:Emissions ;\tEMI_POM:Emissions ;\tEMI_SO2:Emissions ;\tEMI_SO4:Emissions ;\tEMI_SS:Emissions ;\tEVAPX:Evaporation of cloud droplets ;\tFICE:Fractional ice content within cloud ;\tFLDS:Downwelling longwave flux at surface ;\tFLDSC:Clearsky downwelling longwave flux at surface ;\tFLNS:Net longwave flux at surface ;\tFLNSC:Clearsky net longwave flux at surface ;\tFLNT:Net longwave flux at top of model ;\tFLNTC:Clearsky net longwave flux at top of model ;\tFLUT:Upwelling longwave flux at top of model ;\tFLUTC:Clearsky upwelling longwave flux at top of model ;\tFOCHANA:Frequency of Occurrence of Clouds with REHANA /= 0 ;\tFREEZ: rate of freezing of cloud droplets ;\tFREQSH:Fractional occurance of shallow convection ;\tFREQZM:Fractional occurance of ZM convection ;\tFSDS:Downwelling solar flux at surface ;\tFSDSC:Clearsky downwelling solar flux at surface ;\tFSNS:Net solar flux at surface ;\tFSNSC:Clearsky net solar flux at surface ;\tFSNT:Net solar flux at top of model ;\tFSNTC:Clearsky net solar flux at top of model ;\tFSNTOA:Net solar flux at top of atmosphere ;\tFSNTOAC:Clearsky net solar flux at top of atmosphere ;\tFSUTOA:Upwelling solar flux at top of atmosphere ;\tGAK:Aerosol assymetry factor ;\tGCLDLWP:Grid-box cloud water path ;\tH2O2:H2O2 ;\tICEFRAC:Fraction of sfc area covered by sea-ice ;\tICLDIWP:In-cloud ice water path ;\tICLDTWP:In-cloud cloud total water path (liquid and ice) ;\tICLDTWX:In-cloud cloud total water path (liquid and ice) ;\tICWMRX:Prognostic in-cloud water mixing ratio ;\tKHET:Aqueous-phase reaction rate ;\tLANDFRAC:Fraction of sfc area covered by land ;\tLCLOUD:Liquid cloud fraction ;\tLHFLX:Surface latent heat flux ;\tLWCF:Longwave cloud forcing ;\tMSAGA:MSA gas-phase prod ;\tMSKtem:TEM mask ;\tNDROPCOL:Column droplet number ;\tNDROPMIX:Droplet number mixing ;\tNDROPSNK:Droplet number loss by microphysics ;\tNDROPSRC:Droplet number source ;\tNRAINX:Loss of cloud droplets due to precip ;\tNUCRAT:Nucleation of cloud droplets ;\tNUSO4N:SO4 nucleation rate ;\tN_AER:Aerosol number concentration ;\tN_AERORG:Aerosol number concentration ;\tOCNFRAC:Fraction of sfc area covered by ocean ;\tODV_SSLTA:SSLTA optical depth in visible band ;\tODV_SSLTC:SSLTC optical depth in visible band ;\tODV_VOLC_MMR:VOLC_MMR optical depth in visible band ;\tODV_bcar1:bcar1 optical depth in visible band ;\tODV_bcar2:bcar2 optical depth in visible band ;\tODV_dust1:dust1 optical depth in visible band ;\tODV_dust2:dust2 optical depth in visible band ;\tODV_dust3:dust3 optical depth in visible band ;\tODV_dust4:dust4 optical depth in visible band ;\tODV_ocar1:ocar1 optical depth in visible band ;\tODV_ocar2:ocar2 optical depth in visible band ;\tODV_sulf:sulf optical depth in visible band ;\tOMEGA:Vertical velocity (pressure) ;\tOMEGAT:Vertical heat flux ;\tOM_AC:OM_AC ;\tOM_AI:OM_AI ;\tOM_NI:OM_NI ;\tPBLH:PBL height ;\tPCONVB:convection base pressure ;\tPCONVT:convection top pressure ;\tPHIS:Surface geopotential ;\tPOM:Concentration ;\tPRECC:Convective precipitation rate (liq + ice) ;\tPRECCDZM:Convective precipitation rate from ZM deep ;\tPRECL:Large-scale (stable) precipitation rate (liq + ice) ;\tPRECSC:Convective snow rate (water equivalent) ;\tPRECSH:Shallow Convection precipitation rate ;\tPRECSL:Large-scale (stable) snow rate (water equivalent) ;\tPRECT:Total (convective and large-scale) precipitation rate (liq + ice) ;\tPS:Surface pressure ;\tPSL:Sea level pressure ;\tQ:Specific humidity ;\tQC:Q tendency - shallow convection LW export ;\tQFLX:Surface water flux ;\tQREFHT:Reference height humidity ;\tQRL:Longwave heating rate ;\tQRS:Solar heating rate ;\tREFFL:Effective Radius of Cloud Droplets ;\tREHANA:Effective radius as seen from satellite ;\tRELH:Fictive relative humidity ;\tRELHUM:Relative humidity ;\tRHREFHT:Reference height relative humidity ;\tS2GA:SO2 gas-phase prod ;\tS4AQ:Sulphate aq.phase prod ;\tS4GA:Sulphate gas-phase prod ;\tSELFX:Selfcollection of cloud droplets ;\tSFCDNCIX:CDNCIX surface flux ;\tSFCLDICE:CLDICE surface flux ;\tSFCLDLIQ:CLDLIQ surface flux ;\tSFCLDLIX:CLDLIX surface flux ;\tSHFLX:Surface sensible heat flux ;\tSNOWHICE:Water equivalent snow depth ;\tSNOWHLND:Water equivalent snow depth ;\tSO2:SO2 ;\tSO2CO:Concentration ;\tSO4:Concentration ;\tSO4_A1:SO4_A1 ;\tSO4_A2:SO4_A2 ;\tSO4_AC:SO4_AC ;\tSO4_N:SO4_N ;\tSO4_NA:SO4_NA ;\tSO4_PR:SO4_PR ;\tSOLIN:Solar insolation ;\tSOLLD:Solar downward near infrared diffuse to surface ;\tSOLSD:Solar downward visible diffuse to surface ;\tSRFRAD:Net radiative flux at surface ;\tSS:Concentration ;\tSST:sea surface temperature ;\tSS_A1:SS_A1 ;\tSS_A2:SS_A2 ;\tSS_A3:SS_A3 ;\tSUPERSAT:Supersaturation from AGR schem ;\tSWCF:Shortwave cloud forcing ;\tT:Temperature ;\tTAUX:Zonal surface stress ;\tTAUY:Meridional surface stress ;\tTGCLDIWP:Total grid-box cloud ice water path ;\tTGCLDLWP:Total grid-box cloud liquid water path ;\tTGCLDLWX:Offline grid-box cloud liquid water path ;\tTH:Potential Temperature ;\tTH2d:Zonal-Mean potential temp ;\tTMQ:Total (vertically integrated) precipitatable water ;\tTREFHT:Reference height temperature ;\tTREFMNAV:Average of TREFHT daily minimum ;\tTREFMXAV:Average of TREFHT daily maximum ;\tTROP_P:Tropopause Pressure ;\tTROP_T:Tropopause Temperature ;\tTROP_Z:Tropopause Height ;\tTS:Surface temperature (radiative) ;\tTSMN:Minimum surface temperature over output period ;\tTSMX:Maximum surface temperature over output period ;\tU:Zonal wind ;\tU10:10m wind speed ;\tU2d:Zonal-Mean zonal wind ;\tUAS:Eastward 10m wind ;\tUS:Zonal wind, staggered ;\tUTGWORO:U tendency - orographic gravity wave drag ;\tUU:Zonal velocity squared ;\tUV2d:Meridional Flux of Zonal Momentum: 2D prj of zon. mean ;\tUV3d:Meridional Flux of Zonal Momentum: 3D zon. mean ;\tUW2d:Vertical Flux of Zonal Momentum; 2D prj of zon. mean ;\tUW3d:Vertical Flux of Zonal Momentum: 3D zon. mean ;\tV:Meridional wind ;\tV2d:Zonal-Mean meridional wind ;\tVAS:Northward 10m wind ;\tVD01:Vertical diffusion of Q ;\tVQ:Meridional water transport ;\tVS:Meridional wind, staggered ;\tVT:Meridional heat transport ;\tVTH2d:Meridional Heat Flux: 2D prj of zon. mean ;\tVTH3d:Meridional Heat Flux: 3D zon. mean ;\tVU:Meridional flux of zonal momentum ;\tVV:Meridional velocity squared ;\tW2d:Zonal-Mean vertical wind ;\tWAK:Aerosol single scattering albedo ;\tWET_BC:Wet deposition ;\tWET_DUST:Wet deposition ;\tWET_POM:Wet deposition ;\tWET_SO2:Wet deposition ;\tWET_SO4:Wet deposition ;\tWET_SS:Wet deposition ;\tWTH3d:Vertical Heat Flux: 3D zon. mean ;\tWTKE:Standard deviation of updraft velocity ;\tZ3:Geopotential Height (above sea level) ;\tcb_ozone_c:ozone column burden used in climate calculation ;\tcb_sulf_c:sulf column burden used in climate calculation ;\tSource = MICOM ; Variables =\t\ttime:time ;\tsealv:Sea level ;\tmaxmld:Maximum mixed layer depth ;\tsst:Ocean surface temperature ;\tSource = CLM ; Variables =\t\tlevgrnd:coordinate soil levels ;\tlevlak:coordinate lake levels ;\tedgen:northern edge of surface grid ;\tedgee:eastern edge of surface grid ;\tedges:southern edge of surface grid ;\tedgew:western edge of surface grid ;\ttime:time ;\tmcdate:current date (YYYYMMDD) ;\tmcsec:current seconds of current date ;\tmdcur:current day (from base day) ;\tmscur:current seconds of current day ;\tnstep:time step ;\ttime_bounds:history time interval endpoints ;\tlon:coordinate longitude ;\tlat:coordinate latitude ;\tlonatm:atm coordinate longitude ;\tlatatm:atm coordinate latitude ;\tlonrof:runoff coordinate longitude ;\tlatrof:runoff coordinate latitude ;\tlongxy:longitude ;\tlatixy:latitude ;\tarea:grid cell areas ;\tareaupsc:normalized grid cell areas related to upscaling ;\ttopo:grid cell topography ;\ttopodnsc:normalized grid cell topography related to downscaling ;\tlandfrac:land fraction ;\tlandmask:land/ocean mask (0.=ocean and 1.=land) ;\tpftmask:pft real/fake mask (0.=fake and 1.=real) ;\tindxupsc:upscaling atm global grid index ;\tlongxyatm:atm longitude ;\tlatixyatm:atm latitude ;\tareaatm:atm grid cell areas ;\tZSOI:soil depth ;\tDZSOI:soil thickness ;\tWATSAT:saturated soil water content (porosity) ;\tSUCSAT:saturated soil matric potential ;\tBSW:slope of soil water retention curve ;\tHKSAT:saturated hydraulic conductivity ;\tBCDEP:total BC deposition (dry+wet) from atmosphere ;\tBIOGENCO:biogenic CO flux ;\tBTRAN:transpiration beta factor ;\tBUILDHEAT:heat flux from urban building interior to walls and roof ;\tDSTDEP:total dust deposition (dry+wet) from atmosphere ;\tDSTFLXT:total surface dust emission ;\tEFLX_DYNBAL:dynamic land cover change conversion energy flux ;\tEFLX_LH_TOT_R:Rural total evaporation ;\tEFLX_LH_TOT_U:Urban total evaporation ;\tELAI:exposed one-sided leaf area index ;\tERRH2O:total water conservation error ;\tERRSEB:surface energy conservation error ;\tERRSOI:soil/lake energy conservation error ;\tERRSOL:solar radiation conservation error ;\tESAI:exposed one-sided stem area index ;\tFCEV:canopy evaporation ;\tFCOV:fractional impermeable area ;\tFCTR:canopy transpiration ;\tFGEV:ground evaporation ;\tFGR:heat flux into soil/snow including snow melt ;\tFGR12:heat flux between soil layers 1 and 2 ;\tFGR_R:Rural heat flux into soil/snow including snow melt ;\tFGR_U:Urban heat flux into soil/snow including snow melt ;\tFIRA:net infrared (longwave) radiation ;\tFIRA_R:Rural net infrared (longwave) radiation ;\tFIRA_U:Urban net infrared (longwave) radiation ;\tFIRE:emitted infrared (longwave) radiation ;\tFLDS:atmospheric longwave radiation ;\tFLUXFM2A:heat flux for rain to snow conversion ;\tFLUXFMLND:heat flux from rain to snow conversion ;\tFPSN:photosynthesis ;\tFSA:absorbed solar radiation ;\tFSAT:fractional area with water table at surface ;\tFSA_R:Rural absorbed solar radiation ;\tFSA_U:Urban absorbed solar radiation ;\tFSDS:atmospheric incident solar radiation ;\tFSDSND:direct nir incident solar radiation ;\tFSDSNDLN:direct nir incident solar radiation at local noon ;\tFSDSNI:diffuse nir incident solar radiation ;\tFSDSVD:direct vis incident solar radiation ;\tFSDSVDLN:direct vis incident solar radiation at local noon ;\tFSDSVI:diffuse vis incident solar radiation ;\tFSH:sensible heat ;\tFSH_G:sensible heat from ground ;\tFSH_NODYNLNDUSE:sensible heat ;\tFSH_R:Rural sensible heat ;\tFSH_U:Urban sensible heat ;\tFSH_V:sensible heat from veg ;\tFSM:snow melt heat flux ;\tFSM_R:Rural snow melt heat flux ;\tFSM_U:Urban snow melt heat flux ;\tFSNO:fraction of ground covered by snow ;\tFSR:reflected solar radiation ;\tFSRND:direct nir reflected solar radiation ;\tFSRNDLN:direct nir reflected solar radiation at local noon ;\tFSRNI:diffuse nir reflected solar radiation ;\tFSRVD:direct vis reflected solar radiation ;\tFSRVDLN:direct vis reflected solar radiation at local noon ;\tFSRVI:diffuse vis reflected solar radiation ;\tGC_HEAT1:initial gridcell total heat content ;\tGC_ICE1:initial gridcell total ice content ;\tGC_LIQ1:initial gridcell total liq content ;\tH2OCAN:intercepted water ;\tH2OSNO:snow depth (liquid water) ;\tH2OSNO_TOP:mass of snow in top snow layer ;\tH2OSOI:volumetric soil water ;\tHC:heat content of soil/snow/lake ;\tHCSOI:soil heat content ;\tHEAT_FROM_AC:sensible heat flux put into canyon due to heat removed from air conditioning ;\tISOPRENE:isoprene flux ;\tLAISHA:shaded projected leaf area index ;\tLAISUN:sunlit projected leaf area index ;\tMONOTERP:monoterpene flux ;\tOCDEP:total OC deposition (dry+wet) from atmosphere ;\tORVOC:other reactive VOC flux ;\tOVOC:other VOC flux ;\tPBOT:atmospheric pressure ;\tPCO2:atmospheric partial pressure of CO2 ;\tQ2M:2m specific humidity ;\tQBOT:atmospheric specific humidity ;\tQCHANR:RTM river flow: LIQ ;\tQCHANR_ICE:RTM river flow: ICE ;\tQCHARGE:aquifer recharge rate ;\tQCHOCNR:RTM river discharge into ocean: LIQ ;\tQCHOCNR_ICE:RTM river discharge into ocean: ICE ;\tQDRAI:sub-surface drainage ;\tQDRIP:throughfall ;\tQFLX_ICE_DYNBAL:ice dynamic land cover change conversion runoff flux ;\tQFLX_LIQ_DYNBAL:liq dynamic land cover change conversion runoff flux ;\tQINFL:infiltration ;\tQINTR:interception ;\tQMELT:snow melt ;\tQOVER:surface runoff ;\tQRGWL:surface runoff at glaciers (liquid only), wetlands, lakes ;\tQRUNOFF:total liquid runoff (does not include QSNWCPICE) ;\tQRUNOFF_NODYNLNDUSE:total liquid runoff (does not include QSNWCPICE) ;\tQRUNOFF_R:Rural total runoff ;\tQRUNOFF_U:Urban total runoff ;\tQSNWCPICE:excess snowfall due to snow capping ;\tQSNWCPICE_NODYNLNDUSE:excess snowfall due to snow capping ;\tQSOIL:ground evaporation ;\tQVEGE:canopy evaporation ;\tQVEGT:canopy transpiration ;\tRAIN:atmospheric rain ;\tRAINATM:atmospheric rain forcing ;\tRAINFM2A:land rain on atm grid ;\tRH2M:2m relative humidity ;\tRH2M_R:Rural 2m specific humidity ;\tRH2M_U:Urban 2m relative humidity ;\tSABG:solar rad absorbed by ground ;\tSABV:solar rad absorbed by veg ;\tSNOAERFRC2L:surface forcing of all aerosols in snow, averaged only when snow is present (land) ;\tSNOAERFRCL:surface forcing of all aerosols in snow (land) ;\tSNOBCFRC2L:surface forcing of BC in snow, averaged only when snow is present (land) ;\tSNOBCFRCL:surface forcing of BC in snow (land) ;\tSNOBCMCL:mass of BC in snow column ;\tSNOBCMSL:mass of BC in top snow layer ;\tSNODSTFRC2L:surface forcing of dust in snow, averaged only when snow is present (land) ;\tSNODSTFRCL:surface forcing of dust in snow (land) ;\tSNODSTMCL:mass of dust in snow column ;\tSNODSTMSL:mass of dust in top snow layer 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