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Benchmarking the material point method for interaction problems between the free surface flow and elastic structure

机译:对自由表面流与弹性结构之间相互作用问题的基准点法进行基准测试

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Numerical simulation of fluid structure interaction (FSI) problems is a significant and interesting field in computational fluid dynamics (CFD). The material point method (MPM), a relatively novel particle-based method, is extended and benchmarked for simulating interactions between the free surface flow and elastic structure. In the MPM method, both the fluid and structure media are described by Lagrangian particles and the unified governing equations are solved in the Eulerian background mesh and the no-slip boundary condition between the fluid and structure can be satisfied automatically, which imply that the MPM method would be a promising scheme for FSI problems. Three validated test cases are presented. The first one is oil flow in a sloshing tank interacting with an elastic bar, and the second test case is water dam-break flow through an elastic gate, and the last one is water dam-break flow past an elastic obstacle. The results obtained by the MPM method are in good agreement with published experimental results and other numerical simulations, which confirm that the MPM method is a promising and effective numerical algorithm for FSI problems involving the free surface flow.
机译:流体结构相互作用(FSI)问题的数值模拟是计算流体力学(CFD)中一个重要而有趣的领域。物质点方法(MPM)是一种相对新颖的基于粒子的方法,已得到扩展和基准测试,以模拟自由表面流和弹性结构之间的相互作用。在MPM方法中,流体和结构介质都由拉格朗日粒子描述,并且在欧拉背景网格中求解统一的控制方程,并且流体和结构之间的无滑移边界条件可以自动得到满足,这意味着MPM该方法将是解决FSI问题的有希望的方案。提出了三个经过验证的测试用例。第一个是晃动油箱中与弹性杆相互作用的油流,第二个测试案例是通过弹性闸门的水坝溃决流,最后一个是通过弹性障碍物的水坝溃决流。通过MPM方法获得的结果与已发表的实验结果和其他数值模拟结果非常吻合,这表明MPM方法对于涉及自由表面流的FSI问题是一种很有前途且有效的数值算法。

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