Fluid-Structure Interaction Analysis of a Two-Dimensional Flag-in-Wind Problem by the ALE Finite Element Method

Tomohiro Sawada, T. Hisada
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引用次数: 17

Abstract

In a recent experiment, Zhang and co-workers found that a flexible filament in a flowing soap film can exhibit three states; stretched-straight, flapping, and bistability. When this experimental model is regarded as a one-dimensional flag in a two-dimensional fluid flow, their findings contradict the common idea that flags always flap in a wind. In this paper, the flag-in-wind problem is simulated by fluid-structure interaction finite element analysis where Navier-Stokes equations based on the ALE method are strongly coupled with Lagrangian equilibrium equations of the structure. In the simulation the three states are successfully reproduced, and the effects of some representative parameters on the amplitude and frequency of the oscillations are investigated to reveal the underlying mechanism involved in flag flapping.
二维风旗问题流固耦合的ALE有限元分析
在最近的一项实验中,张和同事发现流动的肥皂膜中的柔性丝可以表现出三种状态;伸直,拍打,双稳。当这个实验模型被视为二维流体流动中的一维旗帜时,他们的发现与旗帜总是在风中飘扬的普遍观点相矛盾。本文采用基于ALE方法的Navier-Stokes方程与结构的拉格朗日平衡方程强耦合的流固耦合有限元方法,对风旗问题进行了数值模拟。在模拟中成功地再现了这三种状态,并研究了一些代表性参数对振荡幅度和频率的影响,揭示了旗扑动的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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