Nishan Bhattarai
Hydrology and Remote Sensing Laboratory
Collaborator
Phone: (301) 504-7490
Fax:
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Publications
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Warming temperatures exacerbate groundwater depletion rates in India
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Bhattarai, N., Lobell, D., Balwinder, S., Fisher, R., Kustas, W.P., Jain, M. 2023. Warming temperatures exacerbate groundwater depletion rates in India. Science Advances. 9(35). https://www.science.org/doi/10.1126/sciadv.adi1401.
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Explaining the aerodynamic versus radiometric surface temperature paradox in thermal-based evaporation modeling
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Mallick, K., Jarvis, A., Baldocchi, D., Hu, T., Trebs, I., Sulis, M., Bossung, C., Bhattarai, N., Eid, Y., Cleverly, J., Beringer, J., Woodgate, W., Slberstein, R. 2022. Explaining the aerodynamic versus radiometric surface temperature paradox in thermal-based evaporation modeling. Geophysical Research Letters. 49:e2021GL097568. https://doi.org/10.1029/2021GL097568.
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Influence of modeling domain and meteorological forcing data on daily evapotranspiration estimates from a Shuttleworth-Wallace model using Sentinel-2 surface reflectance data
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Bhattarai, N., D'Urso, G., Kustas, W.P., Bambach, N., Anderson, M.C., McElrone, A.J., Knipper, K.R., Gao, F.N., Alsina, M., Aboutalebi, M., McKee, L.G., Alfieri, J.G., Prueger, J.H., Belfiore, O. 2022. Influence of modeling domain and meteorological forcing data on daily evapotranspiration estimates from a Shuttleworth-Wallace model using Sentinel-2 surface reflectance data. Irrigation Science. 40:497-513. https://doi.org/10.1007/s00271-022-00768-0.
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