A spectral mixture analysis based framework for estimating and charactering water use efficiency in heterogeneous drylands

Author:

Pan Qidi,Chen Lu,Lin Xin,Jiao Xin,Zhang Yongxiang,Zhang Ping,Sun Qiangqiang,Sun Danfeng

Funder

National Natural Science Foundation of China

Ministry of Science and Technology of the People's Republic of China

National Key Research and Development Program of China

Publisher

Elsevier BV

Reference76 articles.

1. Ba, J. (2020). Research on the estimation of evapotranspiration under different underlying surfaces in the Heihe River Basin based on the complementary principle [Master's thesis, China University of Geosciences (Beijing)]. DOI:10.27493/d.cnki.gzdzy.2020.001364. (In Chinese).

2. Modeling CO2 and water vapor exchange of a temperate broadleaved forest across hourly to decadal time scales;Baldocchi;Ecol. Model.,2001

3. Soil-geomorphic heterogeneity governs patchy vegetation dynamics at an arid ecotone;Bestelmeyer;Ecology,2006

4. Remote sensing of ecosystem water use efficiency: a review of direct and indirect estimation methods;Cai;Remote Sens. (Basel),2021

5. Advance and evaluation in the long time series vegetation trends research based on remote sensing;Cai;J. Remote Sens,2009

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