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Case Study: Comparative Analysis of Hydrologic Simulations with Areal-Averaging of Moving Rainfall

机译:案例研究:水文模拟与移动平均降水的对比分析

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The goal of this investigation is to compare the hydrologic simulations caused by the areal-averaging of dynamic moving rainfall. Two types of synthetic rainfall are developed: spatially varied rainfall (SVR) is the typical input to a distributed model while temporally varied rainfall (TVR) emulates SVR but is spread uniformly over the entire watershed as in the case of a lumped model. This study demonstrates a direct comparison of peak discharge and peak timing generated by synthetic moving storms over idealized rectangular basins and a real watershed. It is found that the difference between the hydrologic responses from SVR and TVR reflects the impact from the areal-averaging of rainfall; the areal-averaging of rainfall for the movement from upstream to downstream over a lumped model can result in underestimated and delayed peak values in comparison to those from a distributed model; the flood peaks from SVR and TVR are found similar when the storm moves from downstream to upstream. The findings of the study suggest that extra cautions are needed for practitioners when evaluating simulated results from distributed and lumped modeling approaches even using the same rainfall information.
机译:这项研究的目的是比较由动态移动降雨的面积平均引起的水文模拟。开发了两种类型的合成降雨:空间变化降雨(SVR)是分布式模型的典型输入,而时间变化降雨(TVR)模拟SVR,但像集总模型一样,其在整个流域上均匀分布。这项研究表明,在理想的矩形盆地和真实的分水岭上,由合成移动风暴产生的峰值流量和峰值时间直接比较。研究发现,SVR和TVR的水文响应之间的差异反映了降雨面积平均值的影响;与集总模型相比,集总模型上从上游到下游运动的平均降雨面积会导致峰值被低估和延迟;当风暴从下游移动到上游时,发现来自SVR和TVR的洪峰相似。该研究结果表明,即使使用相同的降雨信息,评估从分布式和集总建模方法获得的模拟结果时,从业人员也需要格外小心。

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