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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Well-balanced and shock-capturing solving of 3D shallow-water equations involving rapid wetting and drying with a local 2D transition approach
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Well-balanced and shock-capturing solving of 3D shallow-water equations involving rapid wetting and drying with a local 2D transition approach

机译:通过局部2D转换方法快速润湿和干燥的3D浅水方程的平衡和冲击捕获求解的良好抗冲击求解

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In this study, we develop a shock-capturing numerical model for solving the three-dimensional shallow-water equations with turbulence closure. Numerical discretization is performed using the Godunov-type finite-volume method in sigma coordinates. An approximate Riemann solver is used for numerical flux evaluations. To efficiently and accurately resolve the wet-dry fronts, we propose a local 2D transition approach (i.e., switching from solving the three-dimensional shallow-water equations to solving the depth-averaged two-dimensional shallow-water equations) with using a rather small value of threshold water depth (1x10(-6) m) to distinguish dry cells from the wet ones. A fully-implicit discretization method of the bed-friction terms is developed, which was originally proposed to solve the depth-averaged two-dimensional shallow-water equations. A series of benchmark tests are used to assess the performance of the numerical models, showing that the proposed model is well-balanced and robust to resolve violent free-surface flows. The local 2D transition approach is found to significantly reduce the computational time by one to three orders in a dam-break wave propagation test, and by about 1/2-2/3 in a breaking solitary wave runup test, compared with a same simulation without using this approach. (C) 2020 The Author(s). Published by Elsevier B.V.
机译:在这项研究中,我们开发了一种冲击捕获数值模型,用于求解三维浅水方程与湍流闭合。使用Σ坐标中的Lodunov型有限体积方法来执行数值离散化。近似的Riemann求解器用于数值通量评估。为了有效准确地解析湿干燥的前线,我们提出了一种局部2D过渡方法(即切换求解三维浅水方程以使用相当的方式求解深度平均的二维浅水方程)阈值水深的少值(1×10(-6)m)以区分干细胞从湿润的细胞。开发了床摩擦术语的全隐式离散化方法,最初提出用于解决深度平均的二维浅水方程。一系列基准测试用于评估数值模型的性能,表明所提出的模型是良好的平衡和鲁棒,以解决暴力的自由面流。发现本地2D转换方法在坝断波传播测试中显着将计算时间减少一到三个订单,并且在断开孤波运行试验中达到约1/2-2 / 3,与相同的模拟相比不使用这种方法。 (c)2020提交人。由elsevier b.v出版。

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