The influence of reduced velocity on the control of two-degree-of-freedom vortex induced vibrations of a circular cylinder via synthetic jets

IF 1.3 4区 工程技术 Q3 MECHANICS Fluid Dynamics Research Pub Date : 2022-10-19 DOI:10.1088/1873-7005/ac9b8c
Haibo Wang, Hailong Yu, Yunlan Sun, Rajnish N. Sharma
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引用次数: 2

Abstract

A two-dimensional numerical study is conducted to investigate the influence of the reduced velocity on two-degree-of-freedom vortex induced vibrations of a circular cylinder controlled by synthetic jets ejected in horizontal and vertical directions (β = 0° and β = 90°). The Reynolds number is constant at Re = 150, and the reduced velocity varies in the range of 2.5 and 15 (U* = 2.5–15). The mass ratio of the circular cylinder is 2.0, and the in-flow to the cross-flow natural frequency ratio equals 1.0 (f nx /f ny = 1.0). The oscillation characters, hydrodynamic forces and vortex shedding of circular cylinders with or without synthetic jets control are analyzed and compared. The results indicate that synthetic jets ejected in vertical direction (β = 90°) can intensify both in-flow and cross-flow oscillations of the circular cylinder in the whole reduced velocity range, the vortex shedding of the controlled case (β = 90°) becomes complicated even unstable with the reduced velocity increasing. Synthetic jets ejected in horizontal direction (β = 0°) have excellent performance on suppressing the cross-flow oscillation of the circular cylinder in the whole reduced velocity range. When U* ⩾ 8.0, the in-flow oscillation of the circular cylinder can even be intensified by synthetic jets ejected in horizontal direction (β = 0°).
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减速对合成射流控制圆柱二自由度涡激振动的影响
采用二维数值计算方法,研究了在水平方向和垂直方向(β = 0°和β = 90°)喷射合成射流控制下,速度降低对两自由度圆柱涡激振动的影响。雷诺数在Re = 150时不变,减速速度在2.5 ~ 15范围内变化(U* = 2.5 ~ 15)。圆柱质量比为2.0,内流与横流固有频率比为1.0 (f nx /f ny = 1.0)。分析比较了加、不加合成射流控制时圆柱的振荡特性、水动力和旋涡脱落情况。结果表明:垂直方向(β = 90°)喷射的合成射流在整个降速范围内都能加剧圆柱的内流振荡和横流振荡,控制工况(β = 90°)的旋涡脱落随着降速的增大而变得复杂甚至不稳定。水平方向(β = 0°)喷射的合成射流在整个减速速度范围内对圆柱的横流振荡有较好的抑制作用。当U*小于8.0时,圆柱的流入振荡甚至可以通过在水平方向喷射的合成射流(β = 0°)而加强。
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来源期刊
Fluid Dynamics Research
Fluid Dynamics Research 物理-力学
CiteScore
2.90
自引率
6.70%
发文量
37
审稿时长
5 months
期刊介绍: Fluid Dynamics Research publishes original and creative works in all fields of fluid dynamics. The scope includes theoretical, numerical and experimental studies that contribute to the fundamental understanding and/or application of fluid phenomena.
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