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Efficient scheme for the shallow water equations on unstructured grids with application to the Continental Shelf

机译:非结构网格浅水方程组的有效格式及其在大陆架上的应用

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In this paper, a shallow-water flow solver is presented, based on the finite-volume method on unstructured grids The method is suitable for flows that occur in rivers, channels, sewer systems (1D), shallow seas, rivers, overland flow (2D), and estuaries, lakes and shelf breaks (3D). We present an outline of the numerical approach and show three 2D test cases and an application of tidal propagation on the Continental Shelf. The benefits of applying an unstructured grid were explored by creating an efficient model network that aims at keeping the number of grid cells per wavelength constant. The computational speed of our method was compared with that of WAQUA/ TRIWAQ and Delft3D (the commonly used structured shallow-flow solvers in The Netherlands), and comparable performance was found.
机译:本文基于非结构网格上的有限体积方法,提出了一种浅水流求解器。该方法适用于河流,河道,下水道系统(1D),浅海,河流,陆上流( 2D),以及河口,湖泊和陆架断裂(3D)。我们提出了数值方法的概述,并显示了三个2D测试案例以及在大陆架上的潮汐传播应用。通过创建一个有效的模型网络来探索应用非结构化网格的好处,该模型网络旨在保持每个波长的网格单元数量恒定。将我们的方法的计算速度与WAQUA / TRIWAQ和Delft3D(荷兰常用的结构化浅流求解器)进行了比较,发现了可比的性能。

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