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Heuristic and Eulerian interface capturing approaches for shallow water type flow and application to granular flows

机译:浅水类型流的启发式和欧拉式界面捕获方法及其在颗粒流中的应用

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Determining the wet-dry boundary and avoiding the related spurious thin-layer problem when solving the depth-averaged shallow-water (SW) equations (or similar granular flow models) remains an outstanding challenge, though it has been the focus of much research effort. In this paper, we introduce the use of level set and phase field based methods to address this issue and related problems. We also propose new heuristic methods to address this problem. We implemented all of these methods in TITAN2D, which is a parallel adaptive mesh refinement toolkit designed for numerical simulation of granular flows. Results of the methods for flow over a simple inclined plane and Colima volcano are used to illustrate the methods. For the inclined plane, we compared the results with experimental data and for Colima volcano they are compared to field data. Our approaches successfully captured the interface of the flow and solved the accuracy and stability problems related to the thin layer problem in SW numerical solution. The comparison of results shows that although all of the methods can be used to address this problem, each of them has its own advantages/disadvantages and methods have to be chosen carefully for each problem. (C) 2016 Elsevier B.V. All rights reserved.
机译:在求解深度平均浅水(SW)方程(或类似的颗粒流模型)时,确定干湿边界并避免相关的虚假薄层问题仍然是一项艰巨的挑战,尽管它一直是许多研究工作的重点。在本文中,我们介绍了使用基于水平集和相场的方法来解决此问题和相关问题。我们还提出了新的启发式方法来解决此问题。我们在TITAN2D中实现了所有这些方法,TITAN2D是一个并行的自适应网格细化工具包,专门用于颗粒流的数值模拟。在简单的倾斜平面和科利马火山上流动的方法的结果用于说明这些方法。对于倾斜平面,我们将结果与实验数据进行了比较,对于科利马火山,将其与现场数据进行了比较。我们的方法成功地捕获了流的界面,并解决了与SW数值解中的薄层问题有关的精度和稳定性问题。结果的比较表明,尽管所有方法都可以用来解决此问题,但是每种方法都有其自身的优点/缺点,并且必须针对每个问题仔细选择方法。 (C)2016 Elsevier B.V.保留所有权利。

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