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首页> 外文期刊>Journal of Fluid Mechanics >Fluid mechanics of the flow-excited Helmholtz resonator
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Fluid mechanics of the flow-excited Helmholtz resonator

机译:激流亥姆霍兹共振器的流体力学

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摘要

A flow-excited Helmholtz resonator was investigated experimentally and theoretically. The analysis was focused on a simplified momentum balance integrated over the region of the orifice. The resulting expressions were used to guide an experimental programme designed to obtain measurements of the resonator pressure under flow excitation, as well as the dynamics of the shear layer in the orifice using particle image velocimetry (PIV). The pressure measurements indicated a number of distinctive features as the flow speed varied. The PIV results provided a detailed representation of the shear layer vorticity field, as well as the equivalent hydrodynamic forcing of the resonator. The forcing magnitude was found to be roughly constant over a range of flow speeds. A model was proposed that provides a prediction of the resonator pressure fluctuations based on the thickness of the approach boundary layer, the free stream speed and the acoustic properties of the resonator. The model was shown to provide an accurate representation of the resonating frequency as well as the magnitude of the resonance to within a few decibels.
机译:对流激亥姆霍兹共振器进行了实验和理论研究。分析的重点是在孔口区域上集成的简化动量平衡。所得的表达式用于指导实验程序,该程序旨在获得流动激励下的谐振器压力测量值,以及使用颗粒图像测速仪(PIV)获得的孔中剪切层的动力学特性。随着流速的变化,压力测量结果显示出许多独特的特征。 PIV结果提供了剪切层涡度场的详细表示,以及谐振器的等效流体动力强迫。发现在整个流速范围内,强迫大小大致恒定。提出了一个模型,该模型可根据进场边界层的厚度,自由流速度和谐振器的声学特性来预测谐振器压力波动。该模型显示出可以精确表示共振频率以及共振幅度,精确度在几分贝之内。

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