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Computational Modeling of Moving Boundaries in a 3D Surface Water Model

机译:三维地表水模型中移动边界的计算建模

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This paper presents the computational methods for moving boundary problems in the surface water and overland flow problems. In the surface water domain, the moving boundary is modeled using a moving grid method. The mathematical formulation of the governing equations in the Arbitrary-Lagrangian-Eulerian (ALE) form and the numerical methods including different grid moving algorithms are introduced. In the overland domain, the moving boundary is simulated with a fixed grid method. The governing equations for overland flow are simplified to a diffusive wave equation. A special algorithm is employed to handle the wetting-drying process of the floodplain. A new approach that combines the moving and fixed grid methods is reported in this paper, in which a typical surface water body in the river and estuary is divided into the main river channel and the submerged floodplain and modeled as two different domains with interaction through the interface.
机译:本文介绍了地表水中边界问题的计算方法和陆上流动问题。在地表水域中,使用移动的网格方法建模移动边界。介绍了任意拉格朗日 - 欧拉(ALE)形式的控制方程的数学制定和包括不同网格移动算法的数值方法。在陆地域中,通过固定网格方法模拟移动边界。覆盖流的控制方程被简化到扩散波方程。采用特殊算法来处理洪泛平原的润湿干燥过程。在本文中报道了一种结合移动和固定电网方法的新方法,其中河流和河口中的典型地表水体被分为主河道和淹没的洪泛区,并以两种不同的域通过互动模拟界面。

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