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Coupled Moving Particle Simulation-Finite-Element Method Analysis of Fluid-Structure Interaction in Geodisasters

机译:耦合运动粒子仿真 - 地理坐标流体结构互动的有限元方法分析

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摘要

Geodisasters associated with fluidized geomaterials, such as flow-like landslides, flow slides, and debris flows, pose a tremendous threat to communities and the environment. Protective structural measures are therefore important for disaster prevention and mitigation. However, the development of a numerical method to study fluid-structure interaction (FSI) remains a challenge. A coupled method is proposed using moving particle simulation (MPS) to simulate the large deformation of fluidized geomaterials and a finite-element method (FEM) to model the dynamic behavior of structures. A new boundary condition based on the Shepard filter method is developed for MPS to improve its efficiency. An interaction model with weak coupling schemes is used to effectively communicate information and coordinate the different time steps between the MPS and FEM approaches. The effectiveness and accuracy of the hybrid numerical method for FSI are verified and validated using a series of benchmark problems.
机译:与流化的地磁材料相关的地理索斯,例如流动的滑坡,流动幻灯片和碎片流动,对社区和环境构成了巨大的威胁。因此,保护​​性结构措施对于防灾和缓解很重要。然而,开发用于研究流体结构相互作用(FSI)的数值方法仍然是一个挑战。使用移动粒子仿真(MPS)提出了一种耦合方法,以模拟流化的地质材料的大变形和有限元方法(FEM)来模拟结构的动态行为。为MPS开发了一种基于Shepard滤波器方法的新边界条件,以提高其效率。具有弱耦合方案的交互模型用于有效地传送信息并协调MPS和FEM方法之间的不同时间步长。使用一系列基准问题验证和验证了FSI混合数值方法的有效性和准确性。

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