关于在固体壁面附近的方形圆柱体的压力场和旋涡脱落抑制

O. Haidn, S. Bailey, R. Martinuzzi
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引用次数: 2

摘要

研究了当雷诺数在20000 ~ 40000之间时,安装在固体壁面附近的方形圆柱体的表面压力和尾流速度场随附面层厚度和柱面间隙高度的变化规律。研究的重点是抑制临界间隙高度附近发生的涡脱落。将平均数据结合起来确定三种不同的流动形式。时间和频率分析表明,在大间隙高度时,周期性涡脱落受到底层大尺度结构的扰动,导致相位抖动和长期相关性丧失。对于小的间隙,没有周期性运动的证据。对于中间间隙高度,上下圆柱体表面的压力场之间的相关性逐渐丧失,导致尾迹中穿插着非相干运动的正弦波动周期。发现雷诺数的影响可以忽略不计,边界层厚度的增加导致临界间隙高度的降低。稳定性分析表明,稳定涡街仅在顶切变层与底切变层环流比一定范围内存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RELATING PRESSURE FIELD AND VORTEX SHEDDING SUPPRESSION FOR A SQUARE CYLINDER IN THE VICINITY OF A SOLID WALL
Surface pressure and wake velocity field fluctuations are investigated for a square cylinder mounted in the vicinity of a solid wall as functions of the boundary layer thickness and cylinder-to-wall gap heights for Reynolds numers between 20000 and 40000. The study focuses on the suppression of vortex shedding occurring around critical gap heights. Mean data are combined to identify three distinct flow regimes. Time and frequency analyses show that at large gap heights periodic vortex shedding is perturbed by underlying large-scale structures leading to phase jitter and long-term loss of correlation. For small gaps, there is no evidence of periodic motion. For intermediate gap heights, there is a gradual loss of correlation between the pressure field on the top and lower cylinder surfaces, which leads to periods of sinusoidal fluctuations interspersed with incoherent motion in the wake. It is found that the Reynolds number influence is negligible and that an increase in the boundary layer thickness results in a reduction of the critical gap height. Stability considerations suggest that a stable vortex street can only exist for a certain range of the top shear layer to bottom shear layer circulation ratio.
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