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The effect of external mean flow on sound transmission through double-walled cylindrical shells lined with poroelastic material

机译:外均流对通过多孔弹性材料衬里的双壁圆柱壳的声传递的影响

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摘要

Sound transmission through a system of double shells, lined with poroelastic material in the presence of external mean flow, is studied. The porous material is modeled as an equivalent fluid because shear wave contributions are known to be insignificant. This is achieved by accounting for the energetically most dominant wave types in the calculations. The transmission characteristics of the sandwich construction are presented for different incidence angles and Mach numbers over a wide frequency range. It is noted that the transmission loss exhibits three dips on the frequency axis as opposed to flat panels where there are only two such frequencies--results are discussed in the light of these observations. Flow is shown to decrease the transmission loss below the ring frequency, but increase this above the ring frequency due to the negative stiffness and the damping effect added by the flow. In the absence of external mean flow, porous material provides superior insulation for most part of the frequency band of interest. However, in the presence of external flow, this is true only below the ring frequency--above this frequency, the presence of air gap in sandwich constructions is the dominant factor that determines the acoustic performance. In the absence of external flow, an air gap always improves sound insulation.
机译:研究了在存在外部平均流的情况下,通过双层壳系统(衬有多孔弹性材料)的声音传输。多孔材料被建模为等效流体,因为已知剪切波的贡献微不足道。这是通过在计算中考虑能量上最主要的波类型来实现的。在宽的频率范围内,针对不同的入射角和马赫数,给出了三明治结构的传输特性。值得注意的是,与只有两个这样的频率的平板相反,传输损耗在频率轴上呈现出三个倾角-根据这些观察结果来讨论结果。流动被显示为在环频率以下降低了传输损耗,但由于负刚度和流动所带来的阻尼作用,在环频率以上却增加了传输损耗。在没有外部平均流量的情况下,多孔材料可为大部分目标频段提供出色的绝缘性能。但是,在存在外部流动的情况下,只有在振铃频率以下才是正确的-在此频率以上,夹层结构中是否存在气隙是决定声学性能的主要因素。在没有外部流动的情况下,气隙总是可以改善隔音效果。

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