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Effect of Flow on Helmholtz Resonator Acoustics: A Three-Dimensional Computational Study vs. Experiments

机译:流动对亥姆霍兹谐振器声学的影响:三维计算研究与实验

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The effectiveness of the Helmholtz resonator as a narrow band acoustic attenuator, particularly at low frequencies, makes it a highly desirable component in a wide variety of applications, including engine breathing systems. The present study investigates the influence of mean flow grazing over the neck of such a configuration on its acoustic performance both computationally and experimentally. Three-dimensional unsteady, turbulent, and compressible Navier-Stokes equations are solved by using the Pressure-Implicit-Splitting-of-Operators algorithm in STAR-CD to determine the time-dependent flow field. The introduction of mean flow in the main duct is shown to reduce the peak transmission loss and shift the fundamental resonance frequency to a higher value. The predictions for transmission loss exhibit a good agreement with the experimental results obtained on a flow-impedance tube, thereby demonstrating the effectiveness of the computational approach in studying the complex interactions of the flow field with the acoustics of Helmholtz resonators.
机译:Helmholtz谐振器作为窄带声衰减器的有效性,特别是在低频下,使其成为各种应用中的非常理想的组件,包括发动机呼吸系统。本研究调查了在计算上和实验上对这种配置的颈部颈部上颈部的平均流动的影响。通过使用Star-CD中的压力隐式剖面算法来解决三维不稳定,湍流和可压缩Navier-Stokes方程以确定时间依赖的流场。显示主管中的平均流量的引入显现为降低峰值传输损耗,并将基本的共振频率移至更高的值。传输损耗的预测表现出良好的一致性与在流量阻抗管上获得的实验结果,从而证明了计算方法在研究流场与亥姆霍兹谐振器的声学的复杂相互作用的有效性。

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