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Vibro-acoustics of porous materials - waveguide modelling approach

机译:多孔材料 - 波导建模方法的振动声学

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The porous material is considered as a compound multi-layered waveguide (i.e. a fluid layer surrounded with elastic layers) with traction free boundary conditions. The attenuation of the vibro-acoustic waves in such a material is assessed. This approach is compared with a conventional Biot's model and a qualitative agreement in phase velocities as well as damping estimates is found. The waveguide model predicts four waves, out of which two are attenuated when the viscous fluid is considered (while the elastic layer being ideally lossless). One of these waves is found to be significantly controlled by the fluid viscosity, while for the other the effect of viscosity was observed for very small frequencies. The Biot's model predicts only one of these attenuated waves, where the latter one is not predicted. Thus the proposed waveguide approach provide additional information about the wave propagation in porous materials.
机译:多孔材料被认为是复合多层波导(即用弹性层包围的流体层),其具有牵引无边界条件。评估这种材料中的振动声波的衰减。将这种方法与传统的BIOS模型进行比较,并且发现了阶段速度的定性协议以及阻尼估计。波导模型预测四个波,其中在考虑粘性流体时,其中两个是衰减的两个波(当弹性层理想地无损时)。发现这些波的一个是由流体粘度显着控制的,而另一方面则观察到粘度的效果非常小的频率。 BIOS模型仅预测这些衰减波中的一个,其中没有预测后者。因此,所提出的波导方法提供关于多孔材料中波传播的附加信息。

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