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Asynchronous control of vortex-induced acoustic cavity resonance using imbedded piezo-electric actuators

机译:嵌入式压电致动器对涡激声腔共振的异步控制

摘要

This paper presents an experimental investigation of the control of a vortex-induced acoustic cavity resonance from flow over a bluff body using embedded piezo-ceramic actuators in order to alter the resonant flow-acoustic interactions. The action of the actuators was asynchronous. Experiments were mainly conducted at the flow velocity of acoustic resonance, where the vortex shedding frequency from the upstream bluff body approached the frequency of the first acoustic mode of two downstream cavities. The fluctuating acoustic pressure was measured using a microphone. The perturbed flow field around the bluff body was monitored using two single hot wire anemometers and one X -wire. It was found that the induced transverse vibrations were effective to reduce the acoustic resonance. The cavity sound pressure level at resonance was reduced by 8.2 dB in presence of actuation. The physics behind the control mechanism is discussed.
机译:本文提出了一种实验研究,该实验使用嵌入式压电陶瓷致动器控制从钝体上流动引起的涡流感应声腔共振,以改变共振流声相互作用。执行器的动作是异步的。实验主要是在声共振的流速下进行的,其中上游阻流体的涡旋脱落频率接近两个下游腔的第一声模的频率。使用麦克风测量波动的声压。使用两个单根热线风速计和一根X线监测钝体周围的扰动流场。发现引起的横向振动有效地减小了声共振。存在促动时,共振时的腔体声压级降低了8.2 dB。讨论了控制机制背后的物理原理。

著录项

  • 作者

    Zhang MM; Cheng L; Zhou Y;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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