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首页> 外文期刊>Remote Sensing >Modifying SEBAL Model Based on the Trapezoidal Relationship between Land Surface Temperature and Vegetation Index for Actual Evapotranspiration Estimation
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Modifying SEBAL Model Based on the Trapezoidal Relationship between Land Surface Temperature and Vegetation Index for Actual Evapotranspiration Estimation

机译:基于地表温度与植被指数梯形关系的修正SEBAL模型用于实际蒸散量估算

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摘要

The Surface Energy Balance Algorithm for Land (SEBAL) is widely used to estimate actual evapotranspiration (ETa). One major limitation of the SEBAL model is the subjectiveness in selecting extreme cold/hot pixels. In the present study, the SEBAL model is modified by determining the extreme cold/hot status, based on the theoretical trapezoidal relationship between land surface temperature (Ts) and Enhanced Vegetation Index (EVI), which is established for each pixel. In this way, the dependence of SEBAL model on the existence of extreme cold/hot status and the subjectiveness in selecting cold/hot pixels with SEBAL model are eliminated. The performance of the classical SEBAL model and the modified version, T-SEBAL, are compared for estimating ETa for a semi-arid catchment, and the result showed that the accuracy of ETa estimation is improved by the T-SEBAL model compared with the classical SEBAL model.
机译:土地表面能平衡算法(SEBAL)被广泛用于估算实际蒸散量(ET a )。 SEBAL模型的一个主要限制是选择极端冷/热像素时的主观性。在本研究中,SEBAL模型是根据陆地表面温度(Ts)与增强植被指数(EVI)之间的理论梯形关系(通过为每个像素建立的)来确定极端冷/热状态而进行修改的。以此方式,消除了SEBAL模型对极端冷/热状态的存在的依赖性以及使用SEBAL模型选择冷/热像素时的主观性。比较了经典SEBAL模型和改进版本T-SEBAL的性能,以估计半干旱流域的ET a ,结果表明ET a <与经典SEBAL模型相比,T-SEBAL模型改进了/ sub的估计。

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