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Transient wave propagation in multilayered viscoelastic media: Theory, numerical computation, and validation

机译:多层粘弹性介质中的瞬态波传播:理论,数值计算和验证

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摘要

This paper extends the classical problem of transient wave propagation in multilayered solids to transient wave propagation in multilayered viscoelastic solids. Laplace and Hankel transforms and the transfer-matrix approach are used in the formulation together with the elastic-viscoelastic correspondence principle in linear viscoelasticity. The derived formula provides a theoretical basis to allow effective and efficient numerical algorithms to be developed. MATLAB is used to develop a computer program DYNALAYER(T) that implements the theory developed. The numerical results are compared with the existing data available in literature and those obtained from finite element analysis using ANSYS. Excellent agreement has been observed from comprehensive comparisons, which verifies the validity of the theory, algorithm, and computer program developed in this study. The conclusion and findings of this study may result in a number of engineering applications, such as nondestructive evaluation of highway and airport pavements, petroleum exploration, countermine technology, geophysical inversion, structural health monitoring, and vehicle weigh-in-motion systems.
机译:本文将瞬态波在多层固体中传播的经典问题扩展到多层粘弹性固体中的瞬态波传播。公式中使用了拉普拉斯和汉克尔变换以及转移矩阵方法以及线性粘弹性中的弹性-粘弹性对应原理。推导的公式为开发有效和高效的数值算法提供了理论基础。 MATLAB用于开发实现所开发理论的计算机程序DYNALAYER(T)。将数值结果与文献中现有的数据以及使用ANSYS从有限元分析中获得的数据进行比较。通过全面的比较已观察到极好的一致性,这验证了本研究开发的理论,算法和计算机程序的有效性。这项研究的结论和发现可能会导致许多工程应用,例如高速公路和机场人行道的无损评估,石油勘探,防雷技术,地球物理反演,结构健康监测以及车辆动态称重系统。

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