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A three-dimensional hydrodynamic model for shallow waters using unstructured Cartesian grids

机译:非结构笛卡尔网格的浅水三维水动力模型

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摘要

This paper presents a three-dimensional unstructured Cartesian grid model for simulating shallow water hydrodynamics in lakes, rivers, estuaries, and coastal waters. It is a flux-based finite difference model that uses a cut-cell approach to fit the bottom topography and shorelines and, at the same time, has the flexibility of discretizing complex geometries with Cartesian grids that can be arbitrarily downsized in the two horizontal directions simultaneously. Because of the use of Cartesian grids, the grid generation is very simple and does not suffer the grid generation headache often seen in many other unstructured models, as the unstructured Cartesian grid model does not have any requirements on the orthogonality of the grids. The newly developed unstructured Cartesian grid model was validated against analytical solutions for a three-dimensional seiching case in a rectangular basin, before it was compared with another three-dimensional model named LESS3D for circulations and salinity transport processes in an idealized embayment that is driven by tides and freshwater inflows. Model tests show that the numerical procedure used in the unstructured Cartesian grid model is robust. Similar to other unstructured models, a variable grid size has resulted in a smaller number of grids required for a reasonable model simulation, which in turn reduces the CPU time used in the model run.
机译:本文提出了三维非结构化笛卡尔网格模型,用于模拟湖泊,河流,河口和沿海水域中的浅水流体动力学。它是基于通量的有限差分模型,使用切线单元方法拟合底部地形和海岸线,同时具有灵活的灵活性,可以使用笛卡尔网格离散复杂的几何形状,而笛卡尔网格可以在两个水平方向上任意缩小同时。由于使用笛卡尔网格,网格生成非常简单,并且不会遭受在许多其他非结构化模型中经常出现的网格生成难题,因为非结构化笛卡尔网格模型对网格的正交性没有任何要求。新开发的非结构化笛卡尔网格模型已针对矩形盆地中三维贴合情况的解析解进行了验证,然后与另一种名为LESS3D的三维模型进行了理想的下沉过程中的环流和盐分传输过程的比较,潮汐和淡水流入。模型测试表明,在非结构化笛卡尔网格模型中使用的数值过程是可靠的。与其他非结构化模型类似,可变的网格大小导致合理的模型仿真所需的网格数量更少,从而减少了模型运行中使用的CPU时间。

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