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Regional estimation and validation of remotely sensed evapotranspiration in China

机译:中国遥感蒸散量的区域估算与验证

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摘要

Accurate estimates of evapotranspiration (ET) are important to skillful predictions of runoff, soil moisture and crop productivity. In this study, ET was simulated over three years in China by integrating remotely-sensed data with the simulation model SEBS-China. SEBS-China was developed from the Surface Energy Balance System (SEBS) model that is used to estimate atmospheric turbulent heat fluxes and evaporative fraction through satellite-derived radiation fluxes and land surface temperatures coupled with near-surface meteorological variables. Simulated regional ET was first evaluated using experimental data from the Changbai Mountains and five river basins in China. Average annual simulated ET agreed well with the observed data, based on the detailed results through comparative validation. Regional ET derived from SEBS-China was then compared with the simulated ET from the Common Land Model (CoLM). Both of the models simulated regional ET well, with a few overestimated areas such as in the Qinghai-Tibet Plateau, YanShan and South Daxing'anling Mountains. We conclude that more efficient ET estimation can be achieved through combining remotely-sensed information with land surface models. (C) 2015 Elsevier B.V. All rights reserved.
机译:准确的蒸散量(ET)估算值对于熟练预测径流量,土壤湿度和农作物生产力至关重要。在这项研究中,通过将遥感数据与模拟模型SEBS-China集成,在中国对ET进行了三年的模拟。 SEBS-China是根据表面能量平衡系统(SEBS)模型开发的,该模型用于通过卫星衍生的辐射通量和地表温度以及近地表气象变量来估算大气湍流通量和蒸发分数。首先使用来自中国长白山和五个流域的实验数据评估了模拟的区域ET。根据比较验证的详细结果,年均模拟ET值与观测数据非常吻合。然后,将来自SEBS-China的区域ET与来自Common Land Model(CoLM)的模拟ET进行了比较。这两个模型都很好地模拟了区域ET,并有一些被高估的区域,例如青藏高原,燕山和南大兴安岭。我们得出结论,通过将遥感信息与地表模型相结合,可以实现更有效的ET估算。 (C)2015 Elsevier B.V.保留所有权利。

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