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An Experimental Study on Active Control of Leakage-Flow-Induced Vibrations: Experiments for Translational One-Degree-of-Freedom System

机译:渗漏流动振动主动控制的实验研究:翻译一度自由度系统的实验

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This paper describes the active feedback control of leakage-flow-induced vibrations in translational one-degree-of-freedom system. In this paper, suppression of the leakage-flow-induced vibrations by the active feedback control technique is demonstrated experimentally. A rigid plate, as a controlled object, is elastically supported in a narrow tapered passage by using two flat-springs. The leakage-flow-induced vibrations occur to the plate in the translational motion due to the fluid flow in the narrow passage. The leakage-flow-induced vibrations are suppressed by the active feedback to the injection (and drawing) of the fluid at the inlet or outlet of the passage. The critical flow rate under controlled condition is examined with varying the controller gain and phase-shift between the injection (and drawing) of the fluid and the vibration strain (displacement) signal of the plate. As a result, it is indicated experimentally that the active feedback control technique increases the critical flow rate, and suppress the leakage-flow-induced vibrations effectively. Further, the control performance is examined and stabilization mechanism by the active feedback control is discussed.
机译:本文介绍了泄漏流动诱导的翻译自由度系统中的振动的主动反馈控制。在本文中,通过实验证明了通过主动反馈控制技术抑制漏流流动诱导的振动。通过使用两个平坦弹簧,在窄锥形通道中弹性地支撑刚性板作为受控物体。由于窄通道中的流体流动,泄漏流动感应的振动发生在平移运动中的板中。通过在通道的入口或出口处的流体的反馈(和拉伸)抑制泄漏流动感应的振动。通过改变流体的喷射(和绘图)与板的振动应变(位移)信号之间改变控制条件下的临界流量。结果,实验指示有源反馈控制技术增加临界流量,并有效地抑制漏流诱导的振动。此外,讨论了通过主动反馈控制检查控制性能和稳定机制。

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