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Active Feedback Control ot Leakage-Flow-Induced Sheet Flutter by Injection and Suction of Fluid at Inlet or Outlet of Passage

机译:通过通道入口或出口处流体的注入和抽吸,主动反馈控制泄漏流引起的薄片颤动

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摘要

This paper proposes and develops a new non-contact active feedback control of leakage-flow-induced sheet flutter in a narrow passage, by injection and suction of fluid at inlet or outlet of the passage. The strategy of this active control technique is that the active feedback, which is by the activation of the injection/suction of the fluid at the inlet or outlet of the passage, suppresses the original source of the self-exciting fluid force acting on the structure, i.e., cancels the self-excited feedback mechanism. In this paper, the effective suppression of the leakage-flow-induced sheet flutter by the active feedback control technique is demonstrated experimentally. A flexible sheet, as a controlled object, is subjected to fluid flow in a narrow passage. The leakage-flow-induced flutter occurs to the flexible sheet in the translational motion over the critical flow velocity. The leakage-flow-induced sheet flutter is actively controlled and suppressed by the activation of injection/suction of the fluid at the inlet or outlet of the passage. The critical flow velocity under the controlled condition is examined with varying the controller gain and phase-shift between the injection/suction of the fluid and the sensor (vibration displacement) signal of the flexible sheet. As a result, it is indicated experimentally that the active feedback control technique increases the critical flow velocity, and suppress the leakage-flow-induced sheet flutter effectively. Moreover, the control performance is examined experimentally, and stabilization mechanism by the active feedback control is discussed.
机译:本文提出并开发了一种新的非接触式主动反馈控制方法,该方法通过在通道的入口或出口处注入和吸入流体来在狭窄通道中泄漏流引起的片状颤动。这种主动控制技术的策略是,通过激活通道入口或出口处流体的注入/抽吸来产生主动反馈,从而抑制了作用在结构上的自激流体力的原始来源。 ,即取消了自激反馈机制。本文通过实验证明了通过主动反馈控制技术有效抑制漏流引起的薄片颤动。作为受控对象的柔性片在狭窄的通道中经受流体流动。泄漏流引起的颤动在临界流速上以平移运动发生在柔性片材上。通过激活通道入口或出口处流体的注入/抽吸,可以主动控制和抑制由泄漏流引起的薄片颤动。通过改变控制器的增益和流体的注入/抽吸与柔性薄板的传感器(振动位移)信号之间的相移来检查受控条件下的临界流速。结果,从实验上表明,主动反馈控制技术提高了临界流速,并有效地抑制了由漏流引起的薄片颤动。此外,还对控制性能进行了实验检验,并讨论了主动反馈控制的稳定机理。

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