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Investigation of a drag reduction on a circular cylinder in rotary oscillation

机译:旋转振动中圆柱体减阻的研究

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摘要

Drag reduction in two-dimensional flow over a circular cylinder, achieved using rotary oscillation, was investigated with computational simulations. In the experiments of Tokumaru & Dimotakis (1991), this mechanism was observed to yield up to 80% drag reduction at Re = 15 000 for certain ranges of frequency and amplitude of sinusoidal rotary oscillation. Simulations with a high-resolution viscous vortex method were carried out over a range of Reynolds numbers (150–15 000) to explore the effects of oscillatory rotational forcing. Significant drag reduction was observed for a rotational forcing which had been very effective in the experiments. The impact of the forcing is strongly Reynolds number dependent. The cylinder oscillation appears to trigger a distinctive shedding pattern which is related to the Reynolds number dependence of the drag reduction. It appears that the source of this unusual shedding pattern and associated drag reduction is vortex dynamics in the boundary layer initiated by the oscillatory cylinder rotation. The practical efficiency of the drag reduction procedure is also discussed.
机译:通过计算仿真研究了利用旋转振荡实现的圆柱体二维流动的减阻。在Tokumaru和Dimotakis(1991)的实验中,对于正弦旋转振荡的某些频率和振幅范围,在Re = 15000时,观察到该机理可产生高达80%的减阻作用。在一系列雷诺数(150–15 000)上使用高分辨率粘性涡旋方法进行了模拟,以探索振荡旋转强迫的影响。观察到旋转力的阻力明显减小,这在实验中非常有效。强迫的影响强烈依赖于雷诺数。圆柱振动似乎触发了独特的脱落模式,该模式与减阻的雷诺数相关性有关。似乎这种异常脱落模式和相关阻力减小的来源是由振荡圆柱体旋转引发的边界层中的涡旋动力学。还讨论了减阻过程的实际效率。

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  • 作者

    Shiels D.; Leonard A.;

  • 作者单位
  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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