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Application of Incompressible Smoothed Particle Hydrodynamics Method for 3D Fluid Solid Interaction Problem

机译:不可压缩平滑粒子流体动力学方法在3D流体固体相互作用问题中的应用

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A general method for fluid solid interaction problem simulations has been developed in 3D algorithm using incompressible smoothed particle hydrodynamics (SPH) method. The solid is assumed to be rigid so it can be considered as moving boundaries for fluid. Using repulsive force has been proved to be an efficient boundary treatment for incompressible SPH method before with 2D examples. The advantage of this boundary treatment will be more obvious in 3D simulations of fluid-structure interaction problems since that it requires the fewest particle numbers on the boundaries compared with other boundary treatments. The algorithm can be applied to fluid solid interaction problems with deformable solid by using elastic or plastic solid theories. In this paper, 3D dam-breaking is used as an example to demonstrate the performance of this method and aircraft ditching is simulated.
机译:使用不可压缩平滑粒子流体动力学(SPH)方法的3D算法开发了一种流体固体相互作用问题模拟方法。假设固体是刚性的,因此可以被认为是流体的移动边界。在用2D实施例之前被证明使用排斥力是对不可压缩的SPH方法的有效边界处理。这种边界处理的优点在流体结构相互作用问题的3D模拟中将更加明显,因为它需要与其他边界处理相比的边界上最少的粒子数。通过使用弹性或塑料固体理论,可以将算法应用于具有可变形固体的流体固体相互作用问题。在本文中,使用3D坝断裂作为示例以证明这种方法的性能和飞机挖掘的性能。

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