Evapotranspiration estimation considering anthropogenic heat based on remote sensing in urban area

Author:

Cong ZhenTao,Shen QiNing,Zhou Lin,Sun Ting,Liu JiaHong

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences

Reference71 articles.

1. Alexandris S, Stricevic R, Petkovic S. 2008. Comparative analysis of reference evapotranspiration from the surface of rainfed grass in central Serbia, calculated by six empirical methods against the Penman-Monteith formula. Eur Water, 21: 17–28

2. Allen L, Lindberg F, Grimmond C S B. 2011. Global to city scale urban anthropogenic heat flux: Model and variability. Int J Climatol, 31: 1990–2005

3. Allen R G, Morse A, Tasumi M, Bastiaanssen W, Kramber W, Anderson H. 2001. Evapotranspiration from Landsat (SEBAL) for water rights management and compliance with multi-state water compacts. In: Geoscience and Remote Sensing Symposium, IGARSS’01. IEEE 2001 International, 2: 830–833

4. Allen R G, Lindberg F, Grimmond C. 2000. Using the FAO-56 dual crop coefficient method over an irrigated region as part of an evapotranspiration intercomparison study. J Hydrol, 229: 27–41

5. Allen R G, Pereira L S, Raes D, Smith M. 1998. Crop evapotranspiration- Guidelines for computing crop water requirements-FAO Irrigation and drainage paper 56. FAO, Rome, 300: D05109

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