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The effect of length on the acoustic attenuation performance of concentric expansion chambers: an analytical, computational, and experimental investigation

机译:长度对同心膨胀室声衰减性能的影响:分析,计算和实验研究

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Expansion chambers are widely used in the breathing systems of engines due to their desirable broadband noise attenuation characteristics. Following an earlier analytical and computational work of Sahasrabudhe et al. (1992), the present study investigates the effect of the length on the acoustic attenuation performance of concentric expansion chambers. Three approaches are employed to determine the transmission loss: (1) a two-dimensional, axisymmetric analytical solution; (2) a three- dimensional computational solution based on the boundary element method; and (3) experiments on an extended impedance tube setup with nine expansion chambers fabricated with fixed inlet and outlet ducts, fixed chamber diameters, and varying chamber length to diameter ratios from l/d=0.2 to 3.53. The results from all three approaches are shown to agree well. The effect of multi-dimensional propagation is discussed in comparison with the classical treatment for the breakdown of planar waves. The study also provides a simple relation for the number of repeating attenuation domes prior to the domination of higher order modes in terms of the l/d ratio of the expansion chamber.
机译:由于其理想的宽带噪声衰减特性,膨胀室广泛用于发动机的呼吸系统。遵循Sahasrabudhe等人的早期分析和计算工作。 (1992),本研究研究了长度对同心膨胀室的声学衰减性能的影响。采用三种方法来确定传输损耗:(1)二维轴对称分析解决方案; (2)基于边界元法的三维计算解决方案; (3)延伸阻抗管设置的实验,其九个膨胀腔室用固定入口和出口管道,固定室直径和不同腔室长度与L / D = 0.2至3.53的直径比。所有三种方法的结果都显示得很好。与平面波击穿的经典处理相比,讨论了多维传播的效果。该研究还提供了在膨胀室的L / D比在膨胀室的L / D比在升高的衰减圆顶之前的重复衰减圆形的数量的简单关系。

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