首页> 外文期刊>The Journal of the Acoustical Society of America >Transmission loss predictions for dissipative silencers of arbitrary cross section in the presence of mean flow
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Transmission loss predictions for dissipative silencers of arbitrary cross section in the presence of mean flow

机译:存在平均流量时任意截面的耗散消音器的传输损耗预测

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摘要

A numerical technique is developed for the analysis of dissipative silencers of arbitrary, but axially uniform, cross section. Mean gas flow is included in a central airway that is separated from a bulk reacting porous material by a concentric perforate screen. The analysis begins by employing the finite element method to extract the eigenvalues and associated eigenvectors for a silencer of infinite length. Point collocation is then used to match the expanded acoustic pressure and velocity fields in the silencer chamber to those in the inlet and outlet pipes. Transmission loss predictions are compared with experimental measurements taken for two automotive dissipative silencers with elliptical cross sections. Good agreement between prediction and experiment is observed both without mean flow and for a mean flow Mach number of 0.15. It is demonstrated also that the technique presented offers a considerable reduction in the computational expenditure when compared to a three-dimensional finite element analysis.
机译:开发了一种数值技术,用于分析任意但轴向均匀的横截面的耗散消音器。平均气流包含在中央气道中,该气道通过同心穿孔筛网与大量反应的多孔材料隔开。分析开始于采用有限元方法提取无限长的消音器的特征值和相关特征向量。然后使用点并置将消音室内的扩展声压场和速度场与入口和出口管道中的声场相匹配。将传输损耗的预测值与两个具有椭圆形横截面的汽车耗散消音器的实验测量值进行比较。在没有平均流量的情况下以及在平均流量马赫数为0.15的情况下,都可以观察到预测与实验之间的良好一致性。还证明了,与三维有限元分析相比,所提出的技术可显着减少计算费用。

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