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Feedback control of vortex shedding from a circular cylinder by rotational oscillations

机译:旋转振荡对圆柱体涡旋脱落的反馈控制

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摘要

The present paper describes a new active method for controlling vortex shedding from a circular cylinder in a uniform flow at medium Reynolds numbers. It uses rotary cylinder oscillations controlled by the feedback signal of a reference velocity in the cylinder wake. The effectiveness of this feedback control is evaluated by measuring the response of mean and fluctuating velocities in the cylinder wake, the spanwise correlation, the power spectrum, and the fluid forces acting on the cylinder. It is found that the velocity fluctuations and the fluid forces are both reduced by the feedback control with optimum values of the phase lag and feedback gain. The simultaneous flow visualization synchronized with the cylinder oscillation indicates the attenuation as well as the mechanisms of vortex shedding under the feedback control, which is due to the dynamic effect of cylinder oscillation on the vortex formation.
机译:本文描述了一种新的主​​动方法,用于控制中等雷诺数下均匀流动中圆柱体的涡旋脱落。它使用旋转汽缸振荡,该振荡由汽缸尾流中参考速度的反馈信号控制。通过测量气缸尾流中平均速度和波动速度的响应,跨度相关性,功率谱以及作用在气缸上的流体力,可以评估这种反馈控制的有效性。已经发现,通过具有相位滞后和反馈增益的最佳值的反馈控制,均减小了速度波动和流体力。与汽缸振动同步的同时流动可视化指示了在反馈控制下的衰减以及涡流脱落的机制,这是由于汽缸振动对涡流形成的动态影响。

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