Spatiotemporal green water dynamics and their responses to variations of climatic and underlying surface factors: A case study in the Sanjiang Plain, China
Author:
Publisher
Elsevier BV
Subject
Earth and Planetary Sciences (miscellaneous),Water Science and Technology
Reference68 articles.
1. The dominant role of semi-arid ecosystems in the trend and variability of the land CO2 sink;Ahlström;Science,2015
2. Estimation of green and blue water evapotranspiration using machine learning algorithms with limited meteorological data: a case study in Amu Darya River Basin, Central Asia;Azzam;Comput. Electron. Agric.,2022
3. Variations of simulated water use efficiency over 2000-2016 and its driving forces in Northeast China;Chen;Proc. SPIE,2019
4. Climate change and anthropogenic impacts on wetland and agriculture in the songnen and Sanjiang Plain, Northeast China;Chen;Remote Sens.,2018
5. Remote detection of human-induced evapotranspiration in a regional system experiencing increased anthropogenic demands and extreme climatic variability;Chen;Int. J. Remote Sens.,2019
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