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城市洪涝模拟与排水管网中的水流和泥沙输送集成。

Modelling urban flooding integrated with flow and sediment transport in drainage networks.

机构信息

State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China.

State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China.

出版信息

Sci Total Environ. 2022 Dec 1;850:158027. doi: 10.1016/j.scitotenv.2022.158027. Epub 2022 Aug 13.

Abstract

Drainage networks play an essential role in mitigating urban flooding, which, nevertheless, are prone to suffer sediment deposits. To date, however, the effects of sediments in drainage networks on urban flooding remain poorly understood. Here an integrated model is proposed for urban flooding. It is composed of a hydrological module for surface runoff integrated with a one-dimensional hydro-sediment-morphodynamic module for coupled open-channel or pressurized flow and sediment transport in drainage networks. The governing equations are solved synchronously using a well-balanced finite volume method. The model is tested against two laboratory cases involving mixed flow and sediment transport in pipes, and the results agree well with observed data. A new residential area with virtually pervious surface and an established urban area with essentially impervious surfaces are studied using the present model to unravel how sediments in drainage networks affect urban flooding under different extreme rainfall and sediment scenarios. The results reveal that sediments alter the discharge hydrographs in the drainage networks to distinct extents under different storm return periods. As far as the present computational cases are concerned, when a third of the pipe diameter is occupied by sediment deposits, the peak pipeline flow discharge decreases by up to 25 %. Accordingly, the surface inundation depth increases by up to 18 %, and the inundation area expands by up to 12 %, characterizing a considerably higher flooding risk. The present findings provide insight into the influences of sediment transport in drainage networks on urban flooding.

摘要

排水网络在减轻城市洪水方面起着至关重要的作用,但它们容易受到沉积物的影响。然而,迄今为止,排水网络中沉积物对城市洪水的影响仍未得到很好的理解。本文提出了一种用于城市洪水的综合模型。它由一个用于地表径流的水文模块和一个用于耦合排水网络中明渠或压力流和泥沙输运的一维水沙形态动力学模块组成。控制方程使用平衡有限体积法同步求解。该模型通过两个涉及管道中混合流和泥沙输运的实验室案例进行了测试,结果与观测数据吻合良好。使用该模型研究了一个具有虚拟渗透表面的新居民区和一个具有基本不透水表面的已建成城市区,以揭示排水网络中的沉积物在不同极端降雨和泥沙情景下如何影响城市洪水。结果表明,在不同的风暴重现期下,沉积物会在不同程度上改变排水网络中的流量过程线。就目前的计算案例而言,当管道直径的三分之一被沉积物占据时,管道流量峰值会下降高达 25%。因此,地表淹没深度会增加高达 18%,淹没面积会增加高达 12%,从而导致更高的洪水风险。本研究结果深入了解了排水网络中泥沙输运对城市洪水的影响。

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