Flapping vortex dynamics of two coupled side-by-side flexible plates submerged in the wake of a square cylinder

Bin Xu, Hao Wang, Weibin Zhang, Yilin Deng, Xiaoju Shen, Desheng Zhang, B. (Bart) van Esch
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Abstract

The flapping vortex dynamics of two flexible plates submerged side-by-side in the wake of a square cylinder are investigated through a two-way fluid–structure interaction (FSI) simulation. The gap between the two plates can stabilize wakes, lengthen vortex formation, elongate vortices, suppress vortex shedding, and decrease hydrodynamic forces. The numerical results indicate that the two flexible plates can exhibit four distinct modes of coupled motion: out-of-phase flapping, in-phase flapping, transition flapping, and decoupled flapping, depending on the gap spacing. Additionally, it is discovered that each of the four coupling modes has a unique pattern of vortex development. The findings of this study should proved valuable in the design of FSI-based piezoelectric energy harvesters utilizing cylinder–plate systems.
浸没在方形圆柱体尾流中的两块并排耦合柔性板的襟翼涡动力学
通过双向流固耦合(FSI)模拟研究了方形圆柱体尾流中并排浸没的两块柔性板的拍打涡动力学。两块板之间的间隙可以稳定尾流、延长涡流形成时间、拉长涡流、抑制涡流脱落并减小流体动力。数值结果表明,两块挠性板可表现出四种不同的耦合运动模式:相外拍打、相内拍打、过渡拍打和解耦拍打,具体取决于间隙间距。此外,研究还发现四种耦合模式中的每一种都有独特的涡流发展模式。这项研究的发现对利用圆筒板系统设计基于 FSI 的压电能量收集器很有价值。
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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