首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >The effect of surface roughness on aerodynamic forces and vibrations for a circular cylinder in the critical Reynolds number range
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The effect of surface roughness on aerodynamic forces and vibrations for a circular cylinder in the critical Reynolds number range

机译:临界雷诺数范围内圆柱体对空气动力和振动的表面粗糙度的影响

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The excitation mechanism of vibrations of circular cylinders in the critical Reynolds number range remains unclear. These vibrations have been observed in wind tunnels many times but rarely in the field. The surface roughness of the cylinder might be a reason for this difference. Aiming to reveal the effect of surface roughness on the aerodynamic forces and vibrations in the critical Reynolds number range, seven circular cylinders with various value of surface roughness were covered with abrasive papers and tested in stationary and elastically mounted wind tunnel tests. The results show that the surface roughness significantly influences the aerodynamic forces in the critical Reynolds number range by reducing the range of transitions on boundary layers. These influences include suppressing the jumps in lift coefficients and other phenomena that relate to a bistable state occurring only for less rough cylinders. Therefore, sufficient surface roughness can mitigate the vibrations in the critical Reynolds number range by suppressing the bistable state in which the vibrations appear.
机译:临界雷诺数范围内圆柱形圆柱体的振动机制仍不清楚。在风隧道多次观察到这些振动,但很少在该领域。气缸的表面粗糙度可能是这种差异的原因。旨在揭示表面粗糙度对临界雷诺数范围内的空气动力力和振动的影响,七个具有各种表面粗糙度值的圆柱体覆盖有磨料纸,并在静止和弹性安装的风洞测试中进行测试。结果表明,表面粗糙度通过减少边界层上的过渡范围来影响关键雷诺数范围内的空气动力。这些影响包括抑制升力系数的跳跃和其他涉及仅用于更粗糙的圆柱体的双稳态状态的现象。因此,通过抑制出现振动的双稳态状态,可以通过足够的表面粗糙度减轻临界雷诺数范围中的振动。

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