蒸散量
环境科学
能量平衡
下层林
叶面积指数
涡度相关法
大气科学
潜热
植被(病理学)
蒸腾作用
可用能量
生态系统
干旱
天蓬
水循环
水文学(农业)
生态学
气象学
数学
地理
能量(信号处理)
医学
统计
光合作用
植物
岩土工程
病理
工程类
生物
地质学
作者
Vicente Burchard‐Levine,Héctor Nieto,David Riaño,William P. Kustas,Mirco Migliavacca,Tarek S. El‐Madany,Jacob A. Nelson,Ana Andreu,Arnaud Carrara,Jason Beringer,Dennis Baldocchi,M. Pilar Martín
摘要
), improving over both TSEB and seasonally changing TSEB (TSEB-2S) models. In addition, 3SEB inherently partitions water fluxes between the tree, grass and soil sources. The modelled T correlated well with EC T estimates (r > .76), derived from a machine learning ET partitioning method. The T/ET was found positively related to both P and leaf area index, especially compared to the decomposed grass understory T/ET. However, trees and grasses had contrasting relations with respect to monthly P. These results demonstrate the importance in decomposing total ET into the different vegetation sources, as they have distinct climatic drivers, and hence, different relations to seasonal water availability. These promising results improved ET and energy flux estimations over complex TGEs, which may contribute to enhance global drought monitoring and understanding, and their responses to climate change feedbacks.
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