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首页> 外文期刊>Journal of hydrometeorology >Multiscale Hydrologic Applications of the Latest Satellite Precipitation Products in the Yangtze River Basin using a Distributed Hydrologic Model
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Multiscale Hydrologic Applications of the Latest Satellite Precipitation Products in the Yangtze River Basin using a Distributed Hydrologic Model

机译:分布式水文模型在长江流域最新卫星降水产品的多尺度水文应用

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摘要

The present study aims to evaluate three global satellite precipitation products [TMPA 3B42, version 7 (3B42 V7); TMPA 3B42 real time (3B42 RT); and Climate Prediction Center morphing technique (CMORPH)] during 2003-12 for multiscale hydrologic applications-including annual water budgeting, monthly and daily streamflow simulation, and extreme flood modeling-via a distributed hydrological model in the Yangtze River basin. The comparison shows that the 3B42V7 data generally have a better performance in annual water budgeting and monthly streamflow simulation, but this superiority is not guaranteed for daily simulation, especially for flood monitoring. It is also found that, for annual water budgeting, the positive (negative) bias of the 3B42 RT (CMORPH) estimate is mainly propagated into the simulated runoff, and simulated evapotranspiration tends to be more sensitive to negative bias. Regarding streamflow simulation, both near-real-time products show a region-dependent bias: 3B42 RT tends to overestimate streamflow in the upper Yangtze River, and, in contrast, CMORPH shows serious underestimation in those downstream subbasins while it is able to effectively monitor streamflow into the Three Gorges Reservoir. Using 394 selected flood events, the results indicate that 3B42 RT and CMORPH have competitive performances for near-real-time flood monitoring in the upper Yangtze, but for those downstream subbasins, 3B42 RT seems to perform better than CMORPH. Furthermore, the inability of all satellite products to capture some key features of the July 2012 extreme floods reveals the deficiencies associated with them, which will limit their hydrologic utility in local flood monitoring.
机译:本研究旨在评估三种全球卫星降水产品[TMPA 3B42,版本7(3B42 V7); TMPA 3B42实时(3B42 RT);和气候预测中心变型技术[CMORPH]在2003-12年间通过长江流域的分布式水文模型进行多尺度水文应用,包括年度水预算,月和日流量模拟以及极端洪水建模。比较表明,3B42V7数据在年度水预算和月流量模拟中通常具有更好的性能,但是对于日常模拟(尤其是洪水监控)无法保证这种优势。还发现,对于年度水预算,3B42 RT(CMORPH)估计值的正(负)偏差主要传播到模拟径流中,并且模拟蒸散量倾向于对负偏差更敏感。在流量模拟方面,两个近实时产品都显示出与区域有关的偏差:3B42 RT往往高估了长江上游的流量,而CMORPH却严重低估了这些下游子盆地,同时能够有效监测流入三峡水库。使用394个选定的洪水事件,结果表明3B42 RT和CMORPH在长江上游上游的近实时洪水监测方面具有竞争性,但是对于那些下游子盆地,3B42 RT似乎比CMORPH更好。此外,所有卫星产品都无法捕捉2012年7月特大洪灾的某些关键特征,这显示出与之相关的缺陷,这将限制其在当地洪水监测中的水文实用性。

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