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首页> 外文期刊>The Journal of the Acoustical Society of America >An application of the Peano series expansion to predict sound propagation in materials with continuous pore stratification
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An application of the Peano series expansion to predict sound propagation in materials with continuous pore stratification

机译:Peano级数展开法在预测具有连续孔隙分层的材料中的声音传播中的应用

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摘要

This work reports on an application of the state vector (Stroh) formalism and Peano series expansion to solve the problem of sound propagation in a material with continuous pore stratification. An alternative Biot formulation is used to link the equivalent velocity in the oscillatory flow in the material pores with the acoustic pressure gradient. In this formulation, the complex dynamic density and bulk modulus are predicted using the equivalent fluid flow model developed by Horoshenkov and Swift J. Acoust. Soc. Am. 110(5), 2371-2378 (2001) under the rigid frame approximation. This model is validated against experimental data obtained for a 140 mm thick material specimen with continuous pore size stratification and relatively constant porosity. This material has been produced from polyurethane binder solution placed in a container with a vented top and sealed bottom to achieve a gradient in the reaction time which caused a pore size stratification to develop as a function of depth Mahasaranon, J. Appl. Phys. 111, 084901 (2012). It is shown that the acoustical properties of this class of materials can be accurately predicted with the adopted theoretical model.
机译:这项工作报告了状态向量(Stroh)形式主义和Peano级数展开的应用,以解决具有连续孔分层的材料中的声音传播问题。另一种Biot公式用于将材料孔中振荡流的等效速度与声压梯度联系起来。在此公式中,使用Horoshenkov和Swift J. Acoust开发的等效流体模型预测了复杂的动态密度和体积模量。 Soc。上午。 110(5),2371-2378(2001)在刚性框架近似下。该模型已针对140毫米厚的具有连续孔径分层和相对恒定孔隙率的材料样本获得的实验数据进行了验证。该材料由放置在具有通风顶部和密封底部的容器中的聚氨酯粘合剂溶液生产,以实现反应时间的梯度,从而导致孔径分层随深度而变。物理111,084901(2012)。结果表明,采用理论模型可以准确预测此类材料的声学特性。

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