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Numerical Simulation of Effects of River Reconstruction on Flooding: A Case Study of the Ba River, China

机译:河流重建对洪水影响的数值模拟 - 以河川河河案例研究

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摘要

The local reconstruction of river channels may pose obstacles of flood flow, local eddy currents, or high flow velocity which pose potential threats to human life and infrastructures nearby. In the design of such projects, the effects of local reconstruction of the river channel on flooding are often evaluated by the one-dimensional method, which is based on the formula of one-dimensional nonuniform flow. In this study, a two-dimensional hydrodynamic model based on shallow water equations is employed to investigate the impacts of river reconstruction on flooding in the Ba River, China. The finite volume method and an unstructured triangular mesh are used to solve the governing equations numerically. The numerical model is validated by comparison with the results of a physical model of 1?:?120 scale. The backwater effects and impacts of flood flow fields under two flood frequencies are analyzed by comparing the numerical results before and after local reconstruction. The results show that the backwater length under both 10-year and 100-year floods can be reached up to the upstream boundary of the computational domain. However, the maximum water level rises are limited, and the levees in this river channel are safe enough. The flow velocity fields under both floods are changed obviously after local reconstruction in the Ba River. Areas with the potential for scour and deposition of the river bed are also pointed out. The findings of this study are helpful for the evaluation of flood risks of the river.
机译:河流渠道的局部重建可能会造成洪水,局部涡流或高流速的障碍,这对附近的人类生命和基础设施构成了潜在的威胁。在这些项目的设计中,局部重建河流渠道对洪水的影响通常由一维方法进行评估,这是基于一维不均匀流量的公式。在该研究中,采用基于浅水方程的二维流体动力学模型来研究河流重建对中国BA河洪水的影响。有限体积法和非结构化三角网格用于数值求解控制方程。通过与1的物理模型的结果进行验证,验证数值模型?:120刻度。通过比较局部重建之前和之后的数值结果来分析两次洪水频率下洪水场的反水效应和影响。结果表明,可以达到10年和100年洪水下的回水长度到计算领域的上游边界。然而,最大水位上升是有限的,这条河道的堤坝足够安全。在BA河局部重建后,两次洪水下的流速场都发生了显而易见。还指出了河床潜力和沉积河床的地区。本研究的调查结果有助于评估河流的洪水风险。

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