Model outputs from NYC-VPRM and STILT
Data files
Nov 30, 2022 version files 125.03 GB
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DEVasDBF_20210601.nc
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DEVasDBF_20210602.nc
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DEVasDBF_20210603.nc
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DEVasDBF_20210604.nc
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DEVasDBF_20210605.nc
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DEVasDBF_20210606.nc
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DEVasDBF_20210607.nc
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DEVasDBF_20210608.nc
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DEVasDBF_20210609.nc
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DEVasDBF_20210610.nc
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DEVasDBF_20210611.nc
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DEVasDBF_20210612.nc
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DEVasDBF_20210613.nc
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DEVasDBF_20210614.nc
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DEVasDBF_20210615.nc
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DEVasDBF_20210616.nc
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DEVasDBF_20210617.nc
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DEVasDBF_20210618.nc
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DEVasDBF_20210619.nc
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DEVasDBF_20210620.nc
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DEVasDBF_20210621.nc
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DEVasDBF_20210622.nc
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DEVasDBF_20210623.nc
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DEVasDBF_20210624.nc
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DEVasDBF_20210625.nc
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DEVasDBF_20210626.nc
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DEVasDBF_20210627.nc
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DEVasDBF_20210628.nc
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DEVasDBF_20210629.nc
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DEVasDBF_20210630.nc
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DEVasGRS_20210601.nc
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DEVasGRS_20210602.nc
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DEVasGRS_20210603.nc
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DEVasGRS_20210604.nc
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DEVasGRS_20210605.nc
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DEVasGRS_20210606.nc
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DEVasGRS_20210607.nc
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DEVasGRS_20210608.nc
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DEVasGRS_20210609.nc
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DEVasGRS_20210610.nc
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DEVasGRS_20210611.nc
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DEVasGRS_20210612.nc
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DEVasGRS_20210613.nc
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DEVasGRS_20210614.nc
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DEVasGRS_20210615.nc
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DEVasGRS_20210616.nc
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DEVasGRS_20210617.nc
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DEVasGRS_20210618.nc
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DEVasGRS_20210619.nc
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DEVasGRS_20210620.nc
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DEVasGRS_20210621.nc
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DEVasGRS_20210622.nc
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DEVasGRS_20210623.nc
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DEVasGRS_20210624.nc
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DEVasGRS_20210625.nc
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DEVasGRS_20210626.nc
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DEVasGRS_20210627.nc
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DEVasGRS_20210628.nc
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DEVasGRS_20210629.nc
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DEVasGRS_20210630.nc
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DEVasISA_20210601.nc
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DEVasISA_20210602.nc
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DEVasISA_20210603.nc
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DEVasISA_20210604.nc
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DEVasISA_20210605.nc
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DEVasISA_20210606.nc
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DEVasISA_20210607.nc
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DEVasISA_20210608.nc
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DEVasISA_20210609.nc
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DEVasISA_20210610.nc
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DEVasISA_20210611.nc
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DEVasISA_20210612.nc
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DEVasISA_20210613.nc
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DEVasISA_20210614.nc
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DEVasISA_20210615.nc
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DEVasISA_20210616.nc
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DEVasISA_20210617.nc
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DEVasISA_20210618.nc
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DEVasISA_20210619.nc
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DEVasISA_20210620.nc
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DEVasISA_20210621.nc
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DEVasISA_20210622.nc
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DEVasISA_20210623.nc
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DEVasISA_20210624.nc
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DEVasISA_20210625.nc
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DEVasISA_20210626.nc
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DEVasISA_20210627.nc
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DEVasISA_20210628.nc
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DEVasISA_20210629.nc
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DEVasISA_20210630.nc
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MNY_HRRR_EDGAR_DEVasFOR_VPRM_CO2_convolved_all.csv
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MNY_HRRR_EDGAR_DEVasGRS_VPRM_CO2_convolved_all.csv
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README
4.46 KB
Abstract
Modeled biogenic CO2 fluxes from the NYC-VPRM (the Vegetation Photosynthesis and Respiration Model for New York City) and modeled atmospheric CO2 concentration enhancements by STILT (the Lagrangian Atmospheric Transport model). The model outputs are used for findings presented in the manuscript titled "High resolution modeling of vegetation reveals large summertime biogenic CO2 fluxes in New York City" by Dandan Wei, Andrew Reinmann, Luke Schiferl, and Roisin Commane and published in Environmental Research Letters.