Topography-Based Estimation of Evapotranspiration at High Altitudes in Semi-arid Regions
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-48715-6_30
Reference8 articles.
1. Crago, R. D. (1996). Conservation and variability of the evaporative fraction during the day-time. Journal of Hydrology, 180(1–4), 173–194.
2. Gastellu-Etchegorry, J. P., Demarez, V., Pinel, V., & Zagolski, F. (1996). Modeling radiative transfer in heterogeneous 3-D vegetation canopies. Remote Sensing of Environment, 58(2), 131–156.
3. Hao, D., Bisht, G., Gu, Y., Lee, W. L., Liou, K. N., & Leung, L. R. (2021). A parameterization of sub-grid topographical effects on solar radiation in the E3SM Land Model (version 1.0): Implementation and evaluation over the Tibetan Plateau. Geoscientific Model Development, 14(10), 6273–6289.
4. Hoedjes, J. C. B., Chehbouni, A., Jacob, F., Ezzahar, J., & Boulet, G. (2008). Deriving daily evapotranspiration from remotely sensed instantaneous evaporative fraction over olive or-chard in semi-arid Morocco. Journal of Hydrology, 354(1–4), 53–64.
5. Kustas, W. P., & Norman, J. M. (2000). A two-source energy balance approach using directional radiometric temperature observations for sparse canopy covered surfaces. Agronomy Journal, 92(5), 847–854.
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