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Sound penetration into a hard-backed rigid porous layer: Theory and experiments

机译:声音渗透到硬背硬质多孔层中:理论和实验

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摘要

This study examines the sound field within a hard-backed rigid porous medium due to an airborne source. The total sound field can be approximated by two terms: A transmitted wave component arriving at the receiver directly through the porous interface, and a second transmitted wave component reflected from the rigid backing plane before reaching the receiver. These two components can be expressed in an integral form that is amenable to further analyses. A standard saddle path method is applied to evaluate the integral analytically, leading to a uniform asymptotic solution that allows the prediction of the sound field within the rigid porous medium. The validity of the asymptotic formula is verified by comparison with the numerical results computed by a more accurate wave-based numerical scheme. The asymptotic solution is shown to provide a convenient means of rapid and accurate computations of sound field within the rigid porous medium. The accuracy of the numerical solutions is further confirmed by comparison with indoor experimental results. The measurement data and theoretical predictions suggest that when the receiver is located near the bottom of the hard-backed layer, the reflection of the refracted wave gives rise to a significant contribution to the total sound field.
机译:这项研究检查了由空气传播的声源在硬底刚性多孔介质中的声场。总声场可以用两个术语来近似:直接通过多孔界面到达接收器的传输波分量,以及在到达接收器之前从刚性背板反射的第二个传输波分量。这两个组成部分可以以易于进一步分析的整体形式表示。应用标准的鞍形路径方法来分析地评估积分,从而得出统一的渐近解,从而可以预测刚性多孔介质中的声场。通过与更精确的基于波动的数值方案计算的数值结果进行比较,验证了渐近公式的有效性。渐近解被显示为在刚性多孔介质内的声场的快速和准确计算提供了一种方便的手段。通过与室内实验结果进行比较,可以进一步确定数值解的准确性。测量数据和理论预测表明,当接收器位于硬背层底部附近时,折射波的反射将对总声场产生重大影响。

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