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Branch/mode competition in the flow-induced vibration of a square cylinder

机译:方筒流动引起的振动中的分支/模式竞争

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摘要

The flow-induced vibration response of a square cross-sectional cylinder with low mass and damping ratio is analysed using continuous wavelet transforms (CWT) for three representative angles of attack of the cylinder to the incoming flow. The amplitude and frequency responses over a range of flow velocities map out multiple regimes (branches) of oscillation. Analysis of the time–frequency domain for boundary regions between branches using CWT reveals intermittency at the synchronization region boundaries as well as mode competition at branch boundaries. Complementary recurrence analysis shows that periodic dynamical states are interrupted by chaotic bursts in the transition regions around the higher branch at an angle of attack of α = 20° (a new branch first observed by Nemes et al. (2012 J. Fluid Mech. >710, 102–130 ())), supporting the CWT-based frequency–time analysis.This article is part of the theme issue ‘Redundancy rules: the continuous wavelet transform comes of age’.
机译:使用连续小波变换(CWT)分析了圆柱体对进入流的三个代表性迎角,分析了低质量和阻尼比的方形截面圆柱体在流动引起的振动响应。在一定范围的流速范围内的幅度和频率响应可绘制出多种振荡形式(分支)。使用CWT对分支之间的边界区域进行时频域分析,可以发现同步区域边界处的间歇性以及分支边界处的模式竞争。互补递归分析表明,周期性动力学状态被高分支周围过渡区域中以α= 20°的迎角的混沌脉冲中断(Nemes等人(2012 J.Fluid Mech。 strong> 710 ,102-130())),支持基于CWT的频率-时间分析。本文是主题“冗余规则:连续小波变换时代的到来”的一部分。

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