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首页> 外文期刊>The Journal of the Acoustical Society of America >Using dispersion equation for orthotropic media to model antiplane coherent wave propagation in cracked solids
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Using dispersion equation for orthotropic media to model antiplane coherent wave propagation in cracked solids

机译:使用正交各向异性介质的色散方程对裂纹固体中反平面相干波的传播进行建模

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摘要

Attention is focused on the propagation of antiplane coherent wave obliquely incident on mutually parallel and randomly distributed cracks. A fundamental question in this study concerns the ability of describing the coherent wave propagation in all directions from the knowledge of the effective material properties along the effective principal directions, only. Its relevance is illustrated by considering two cases of coherent wave propagation: homogeneous and inhomogeneous waves. For both cases, the effective phase slownesses approximated from the dispersion equation specific for orthotropic homogeneous media are compared to reference results obtained from a direct calculation considering waves obliquely incident on cracks. This work reveals that the effective stiffnesses of this dispersion equation have to be dependent on the propagation direction of the incident wave in order to make this equation consistent.
机译:注意力集中在倾斜入射在相互平行且随机分布的裂纹上的反平面相干波的传播上。这项研究中的一个基本问题涉及仅从有效材料特性的知识沿有效主方向描述所有方向上的相干波传播的能力。通过考虑相干波传播的两种情况来说明其相关性:均匀波和非均匀波。对于这两种情况,将从正交各向异性均质介质特有的弥散方程近似的有效相位慢度与考虑斜向入射波的直接计算获得的参考结果进行比较。这项工作表明,该色散方程的有效刚度必须取决于入射波的传播方向,才能使该方程保持一致。

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