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This study focused on the performance and limitations of the local inertial approximation form model(LIM)of the shallow water equations(SWEs)when applied in urban flood modeling.A numerical scheme of the LIM equations was created using finite volume method with a first-order spatiotemporal Roe Riemann solver.A simplified urban stormwater model(SUSM)considering surface and underground dual drainage system was con-structed based on LIM and the US Environmental Protec-tion Agency Storm Water Management Model.Moreover,a complete urban stormwater model(USM)based on the SWEs with the same solution algorithm was used as the evaluation benchmark.Numerical results of the SUSM and USM in a highly urbanized area under four rainfall return periods were analyzed and compared.The results reveal that the performance of the SUSM is highly consistent with that of the USM but with an improvement in computational efficiency of approximately 140%.In terms of the accuracy of the model,the SUSM slightly underestimates the water depth and velocity and is less accurate when dealing with supercritical flow in urban stormwater flood modeling.Overall,the SUSM can produce comparable results to USM with higher computational efficiency,which provides a simplified and alternative method for urban flood modeling.
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篇名 Urban Stormwater Modeling with Local Inertial Approximation Form of Shallow Water Equations:A Comparative Study
来源期刊 国际灾害风险科学学报(英文版) 学科
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年,卷(期) 2021,(5) 所属期刊栏目 ARTICLES
研究方向 页码范围 745-763
页数 19页 分类号
字数 语种 英文
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国际灾害风险科学学报(英文版)
季刊
2095-0055
11-5970/N
16开
北京市
2010
eng
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272
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0
总被引数(次)
298
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