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Feedback Control of Wake Galloping by Rotational Excitation of Rectangular Cylinder

机译:矩形圆柱旋转激励的尾迹驰豫反馈控制

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In order to develop a new type of wind power generation using feedback amplification of the wind-induced vibration caused between tandemly-arranged rectangular and circular cylinders, wind tunnel experiments were conducted. In the feedback control, the rotational excitation of the windward rectangular cylinder controls the vibration of the leeward circular cylinder. When the windward rectangular cylinder is excited with the time lag less than half a period of the leeward circular cylinder vibration, the leeward circular cylinder vibration is amplified efficiently. On the contrary, the feedback excitation with the time lag greater than half a period of the leeward cylinder vibration suppresses the cylinder vibration sufficiently. Although the leeward cylinder vibration is amplified more efficiently as the control gain is stronger, the amplification effect diminishes beyond a critical gain.
机译:为了开发一种利用串联布置的矩形和圆形圆柱体之间引起的风致振动的反馈放大的新型风力发电技术,进行了风洞实验。在反馈控制中,上风矩形圆筒的旋转激励控制下风圆筒的振动。当以小于背风气缸振动的一半的时间滞后来激励迎风矩形气缸时,有效地放大了背风气缸的​​振动。相反,时滞大于背风气缸振动的一半周期的反馈激励充分地抑制了气缸振动。尽管随着控制增益的增大,下风缸的振动会得到更有效的放大,但放大效果会降低到超过临界增益。

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