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首页> 外文期刊>Journal of Vibration and Acoustics >Synthetic Jet Actuator Cavity Acoustics: Helmholtz Versus Quarter-Wave Resonance
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Synthetic Jet Actuator Cavity Acoustics: Helmholtz Versus Quarter-Wave Resonance

机译:合成射流执行器腔体声学:亥姆霍兹与四分之一波长共振

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摘要

The impact of cavity geometry on the source of acoustic resonance (Helmholtz or quarter-wave) for synthetic jet type cavities is presented. The cavity resonance was measured through externally excited microphone measurements. It was found that, for pancake-shaped cavities, the Helmholtz resonance equation was inadequate (off by more than 130%) at predicting the acoustic cavity resonances associated with synthetic jet actuation, whereas a two-dimensional quarter-wave resonance was accurate to 15%. The changes in the geometry (cavity diameter, cavity height, and orifice length) could alter the cavity resonance by up to 50%, and a finite element solver was accurate at predicting this resonance in all cases. With better knowledge of the phenomena governing the acoustic resonance, prediction of the cavity resonance can become more accurate and improvements to current prediction tools can be made.
机译:提出了空腔几何形状对合成射流型空腔的声共振源(亥姆霍兹或四分之一波)的影响。腔共振是通过外部激励的麦克风测量来测量的。结果发现,对于薄煎饼形的空腔,在预测与合成射流致动相关的声腔共振时,亥姆霍兹共振方程不充分(偏离了130%以上),而二维四分之一波共振精确到15 %。几何形状的变化(空腔直径,空腔高度和孔口长度)最多可改变空腔共振50%,并且有限元求解器可以在所有情况下准确预测这种共振。通过更好地了解控制声共振的现象,腔共振的预测将变得更加准确,并且可以对当前的预测工具进行改进。

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  • 来源
    《Journal of Vibration and Acoustics》 |2015年第5期|054501.1-054501.5|共5页
  • 作者单位

    Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544;

    Boeing Research and Technology, Hazelwood, MO 63042;

    Mechanical Aerospace and Nuclear Engineering, Center for Flow Physics and Control, Rensselaer Polytechnic Institute, Troy, NY 12180;

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  • 正文语种 eng
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