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An experimental study of flutter and buffeting control of suspension bridge by mechanically driven flaps

机译:机械驱动襟翼颤振和抖振控制的实验研究

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The alternative solution for flutter and buffeting stability of a long suspension bridge will be a passive control using flaps. This method not only enables a lightweight economic stiffening girder without an additional stiffness for aerodynamic stability but also avoid the problems from the malfunctions of control systems and energy supply system of an active control by winglets and flaps. A mechanically control using flaps for increasing flutter speed and decreasing buffeting response of a suspension bridge is experimentally studied through a two dimensional bridge deck model. The result shows that the flutter speed is increased and the buffeting response is decreased through the mechanical drive of the flaps.
机译:长悬索桥的颤振和抖抖稳定性的替代解决方案是使用襟翼的被动控制。该方法不仅能够实现轻质的经济型加劲梁,而没有用于空气动力学稳定性的附加刚度,而且避免了由于小翼和襟翼而对主动控制系统的控制系统和能量供应系统的故障造成的问题。通过二维桥面板模型,对使用襟翼的机械控制进行了研究,以提高襟翼的速度并降低悬索桥的抖抖响应。结果表明,通过襟翼的机械驱动,颤振速度提高,抖振响应降低。

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