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Transmission of sound through nonuniform circular ducts with compressible mean flows

机译:通过具有可压缩平均流量的不均匀圆形管道传输声音

摘要

An acoustic theory is developed to determine the sound transmission and attenuation through an infinite, hard-walled or lined, circular duct carrying compressible, sheared, mean flows and having a variable cross section. The theory is applicable to large as well as small axial variations, as long as the mean flow does not separate. Although the theory is described for circular ducts, it is applicable to other duct configurations - annular, two dimensional, and rectangular. The theory is described for the linear problem, but the technique is general and has the advantage of being applicable to the nonlinear case as well as the linear case. The technique is based on solving for the envelopes of the quasi-parallel acoustic modes that exist in the duct instead of solving for the actual wave. A computer program was developed. The mean flow model consists of a one dimensional flow in the core and a quarter-sine profile in the boundary layer. Results are presented for the reflection and transmission coefficients in ducts with varying slopes and carrying different mean flows.
机译:发展了一种声学理论来确定通过无限的硬壁或带衬里的圆形管道的声音传播和衰减,圆形管道带有可压缩的,剪切的,平均流量并且具有可变的横截面。该理论适用于轴向变化的大小,只要平均流量不分开即可。尽管理论是针对圆形风管进行描述的,但它适用于其他风管配置-环形,二维和矩形。描述了关于线性问题的理论,但是该技术是通用的,并且具有可应用于非线性情况和线性情况的优点。该技术基于求解管道中存在的准平行声模的包络,而不是求解实际的波。开发了计算机程序。平均流量模型由岩心中的一维流动和边界层中的四分之一正弦分布组成。给出了具有不同斜率和不同平均流量的管道中的反射系数和透射系数的结果。

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