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A dual finite volume method scheme for catastrophic flash floods in channel networks

机译:信道网络中灾难性山洪的双重有限体积方法

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This paper develops a new numerical scheme for flash floods based on the one-dimensional shallow water equations in channel networks, referred to as the dual finite volume method (DFVM) scheme. The scheme uses an upwind spatial discretization based on staggered meshes so that the flows in multiply connected channel networks are consistently handled without complicated treatment at junctions. The scheme is firstly examined with a series of test cases including idealized and experimental dam break problems to demonstrate its accuracy and versatility. The scheme is then applied to numerical simulation of a flash flood resulting from an earthquake-induced complete dam failure in Japan. Channels from a reservoir to the downstream rivers are modelled as a multiply connected channel network with non-prismatic cross-sections, steep slopes, and bends. The computational results agree well with the field observations and eyewitness reports. Numerical simulation of alternative scenarios as possible cases is also performed to analyze potential risks of the downstream area.
机译:本文基于渠道网络中的一维浅水方程,开发了一种新的山洪暴发数值方案,称为双重有限体积法(DFVM)方案。该方案使用基于交错网格的迎风空间离散化,以便在连接处始终处理多重连接的通道网络中的流,而无需进行复杂的处理。该方案首先通过一系列测试案例进行了检验,包括理想化和实验性溃坝问题,以证明其准确性和多功能性。该方案随后被用于日本地震引起的大坝完全倒塌导致的山洪暴发的数值模拟。从水库到下游河流的河道被建模为具有非棱柱形横截面,陡峭的坡度和弯道的多重连接河道网络。计算结果与现场观察和目击者的报告相吻合。还对可能的替代方案进行了数值模拟,以分析下游地区的潜在风险。

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