首页> 外文期刊>International Journal of Offshore and Polar Engineers >Three-Dimensional Numerical Simulations of Flow Past a Rotating Circular Cylinder at a Reynolds Number of 500
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Three-Dimensional Numerical Simulations of Flow Past a Rotating Circular Cylinder at a Reynolds Number of 500

机译:雷诺数为500时流经旋转圆柱体的流动的三维数值模拟

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Flow around a rotating circular cylinder at a Reynolds number of 500 is investigated numerically. The aim of this study is to investigate the effect of high rotation rate on the wake flow past a circular cylinder. Simulations are performed at a constant Reynolds number of 500 and a wide range of rotation rates from 1.6 to 6. Rotation rate is the ratio of the rotational speed of the cylinder surface to the incoming fluid velocity. It is found that increasing the rotation rate beyond a critical value results in transition to a secondary instability regime where the oscillation of the lift force on the cylinder increases drastically. There is significant increase in the three-dimensionality of the flow inside the secondary instability regime. The flow pattern in the secondary instability regime is characterized by ring-type vortices wrapping around the cylinder. The oscillation of the force coefficient in the secondary instability regime is very irregular.
机译:数值研究了雷诺数为500的旋转圆柱周围的流动。这项研究的目的是研究高转速对通过圆柱体的尾流的影响。以500的恒定雷诺数和从1.6到6的宽旋转速率进行模拟。旋转速率是气缸表面的旋转速度与输入的流体速度之比。已经发现,将旋转速率增加到超过临界值会导致过渡到第二不稳定状态,在第二不稳定状态下,气缸上的升力的振荡急剧增加。次要不稳定状态内部的三维流动显着增加。次要失稳状态下的流动模式的特征是环绕圆柱体的环形涡流。次要失稳状态下力系数的波动非常不规则。

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