论雷诺数低于 10,000 时矩形圆柱体横向奔腾的准稳 定性

IF 3.4 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Ahmed M. Naguib, Mark A. Feero , Alireza Safaripour , Manoochehr M. Koochesfahani
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引用次数: 0

摘要

利用强制横向振荡来研究边长比为 2 的矩形圆柱体在雷诺数小于 10,000 时的准稳定行为(基于圆柱体厚度)。为此,对不同运动阶段作用在振荡圆柱体上的横向力进行了相位平均测量,并与不同攻击角度下作用在静态圆柱体上的平均力进行了比较。此外,还使用单组分分子标记测速仪对流向速度进行了边界层分辨测量,以补充力数据。实验针对两个雷诺数(2,500 和 7,500)、两个振幅(气缸厚度的 20% 和 50%)以及与涡流脱落频率相对应的减速度(减速度的 2-30 倍)的近似范围进行。结果表明,在研究范围内,达到准稳态行为所需的减速度阈值与雷诺数密切相关。雷诺数越低,阈值越高。这种行为与粘滞效应有关,随着雷诺数的降低,粘滞效应使得剪切层的速度过慢,无法适应气缸的运动。在速度和雷诺数降低到最低时,剪切层在循环过程中重新附着在气缸一侧,其攻角小于静态气缸的一半,这种效应最为明显。总之,研究表明,除了与涡流脱落相关的时间尺度外,当雷诺数足够低时,剪切层动态响应的粘性时间尺度也应包括在内,以确定准稳态的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On quasi-steadiness of transverse galloping of rectangular cylinders at Reynolds numbers below 10,000

Forced transverse oscillations are used to investigate the quasi-steady behavior of a rectangular cylinder with a side ratio of 2 at Reynolds numbers less than 10,000 (based on cylinder thickness). To this end, phase-averaged measurements of the transverse force acting on the oscillating cylinder at different phases of motion are compared to the mean force acting on the static cylinder at different angles of attack. The force data are complemented with boundary-layer-resolved measurements of the streamwise velocity using single-component molecular tagging velocimetry. The experiments are conducted for two Reynolds numbers of 2,500 and 7,500, two oscillation amplitudes of 20 % and 50 % of the cylinder thickness, and reduced velocities in the approximate range of 2–30 times the reduced velocity corresponding to the vortex shedding frequency. The results show that the reduced velocity threshold required to attain quasi-steady behavior is strongly dependent on Reynolds number in the investigated range. The effect is such that the lower the Reynolds number, the higher the threshold. This behavior is linked to viscous effects which render the shear layer too slow to adapt to the cylinder motion with decreasing Reynolds number. A most pronounced effect is observed at the lowest reduced velocity and Reynolds number, where the shear layer reattaches on the side of the cylinder during the cycle at an angle of attack less than half that exhibited for the static cylinder. Overall, the study shows that in addition to the time scale associated with vortex shedding, when the Reynolds number is sufficiently low, a viscous time scale characteristic of the shear layer dynamic response should be included in determining the validity of quasi-steadiness.

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来源期刊
Journal of Fluids and Structures
Journal of Fluids and Structures 工程技术-工程:机械
CiteScore
6.90
自引率
8.30%
发文量
173
审稿时长
65 days
期刊介绍: The Journal of Fluids and Structures serves as a focal point and a forum for the exchange of ideas, for the many kinds of specialists and practitioners concerned with fluid–structure interactions and the dynamics of systems related thereto, in any field. One of its aims is to foster the cross–fertilization of ideas, methods and techniques in the various disciplines involved. The journal publishes papers that present original and significant contributions on all aspects of the mechanical interactions between fluids and solids, regardless of scale.
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