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A numerical study on the fluid compressibility effects in strongly coupled fluid-solid interaction problems

机译:强耦合流体固体相互作用问题的流体压缩效应的数值研究

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摘要

Interactions between an incompressible fluid passing through a flexible tube and the elastic wall is one of the strongly coupled fluid-solid interaction (FSI) problems frequently studied in the literature due to its research importance and wide range of applications. Although incompressible fluid is a prevalent model in many simulation studies, the assumption of incompressibility may not be appropriate in strongly coupled FSI problems. This paper narrowly aims to study the effect of the fluid compressibility on the wave propagation and fluid-solid interactions in a flexible tube. A partitioned FSI solver is used which employs a finite volume-based fluid solver. For the sake of comparison, both traditional incompressible (ico) and weakly compressible (wco) fluid models are used in an Arbitrary Lagrangian-Eulerian (ALE) formulation and a PISO-like algorithm is used to solve the unsteady flow equations on a collocated mesh. The solid part is modeled as a simple hyperelastic material obeying the St-Venant constitutive relation. Computational results show that not only use of the weakly compressible fluid model makes the FSI solver in this case more efficient, but also the incompressible fluid model may produce largely unrealistic computational results. Therefore, the use of the weakly compressible fluid model is suggested for strongly coupled FSI problems involving seemingly incompressible fluids such as water especially in cases where wave propagation in the solid plays an important role.
机译:通过柔性管的不可压缩流体通过与弹性壁之间的相互作用是强耦合流体 - 固体相互作用(FSI)经常研究在文献中的问题之一是由于其研究的重要性和广泛的应用范围。虽然不可压缩的流体在许多仿真研究中是一种普遍的模型,但是在强烈耦合的FSI问题中,不可压缩性的假设可能不合适。本文狭义地旨在研究柔性管中的流体可压缩性对波传播和流体固体相互作用的影响。使用分隔的FSI求解器,其采用有限体积的流体求解器。为了比较,传统的不可压缩(ICO)和弱可压缩(WCO)流体模型用于任意拉格朗日 - 欧拉(ALE)配方,并且使用PISO样算法来解决并置地的啮合网格上的不稳定流动方程。固体部分被建模为遵循ST-VENANT组成型关系的简单的超弹性材料。计算结果表明,不仅使用弱可压缩的流体模型使FSI求解器在这种情况下更有效,而且不可压缩的流体模型可能产生很大的计算结果。因此,建议使用弱可压缩流体模型的强烈耦合的FSI问题,涉及看似不可压缩的流体,例如水,特别是在固体中波传播起到重要作用的情况下。

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