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Experimental investigation of flow-induced vibration of a rotating circular cylinder

机译:旋转圆筒流动诱导振动的实验研究

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While flow- induced vibration of bluff bodies has been extensively studied over the last half- century, only limited attention has been given to flow- induced vibration of elastically mounted rotating cylinders. Since recent low- Reynolds- number numerical work suggests that rotation can enhance or suppress the natural oscillatory response, the former could find applications in energy harvesting and the latter in vibration control. The present experimental investigation characterises the dynamic response and wake structure of a rotating circular cylinder undergoing vortex- induced vibration at a low mass ratio ( m D 5 : 78) over the reduced velocity range leading to strong oscillations. The experiments were conducted in a free- surface water channel with the cylinder vertically mounted and attached to a motor that provided constant rotation. Springs and an air- bearing system allow the cylinder to undertake low- damped transverse oscillations. Under cylinder rotation, the normalised frequency response was found to be comparable to that of a freely vibrating non- rotating cylinder. At reduced velocities consistent with the upper branch of a non- rotating transversely oscillating cylinder, the maximum oscillation amplitude increased with non- dimensional rotation rate up to ff 2. Beyond this, there was a sharp decrease in amplitude. Notably, this critical value corresponds approximately to the rotation rate at which vortex shedding ceases for a non- oscillating rotating cylinder. Remarkably, at ff D 2 there was approximately an 80% increase in the peak amplitude response compared to that of a non- rotating cylinder. The observed amplitude response measured over the Reynolds- number range of ( 1100. Re. 6300) is significantly different from numerical predictions and other experimental results recorded at significantly lower Reynolds numbers.
机译:虽然在过去的半个世纪中,流出虚弱体的振动已经过度研究,但是只有有限的注意力引起弹性安装的旋转圆柱的振动。由于最近的低雷诺数数值作品表明,旋转可以增强或抑制自然振荡反应,因此前者可以在能量收集和后者中找到振动控制的应用。本实验研究表征了在导致强大振荡的降低的速度范围内以低质量比(M D 5:78)在低质量比(M D 5:78)下旋转圆柱振动的动态响应和唤醒结构。实验在自由表面水通道中进行,圆柱体垂直安装并附接到提供恒定旋转的电动机。弹簧和空气系统允许气缸进行低阻横向振荡。在汽缸旋转下,发现归一化频率响应与自由振动的非旋转圆筒相当。在与非旋转横向振荡缸的上部分支一致的速度下,最大振荡幅度随着不尺寸的旋转速率而增加到FF 2.超出了这一点,幅度的幅度急剧下降。值得注意的是,该临界值大致对应于涡旋脱落停止不振荡旋转圆筒的旋转速率。值得注意的是,与非旋转圆筒的响应相比,峰值振幅响应的增加大约为80%。观察到的幅度响应在(1100.6300)的reynolds范围内测量的振幅响应与数值预测和其他在显着降低的雷诺数的实验结果显着不同。

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