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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Transient elastic waves propagating in a multi-layered medium subjected to in-plane dynamic loadings. I. Theory
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Transient elastic waves propagating in a multi-layered medium subjected to in-plane dynamic loadings. I. Theory

机译:在多层介质中传播的瞬态弹性波受到平面内动态载荷。一,理论

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The propagation of elastic transient waves in a multi-layered medium subjected to in-plane loadings is investigated in this study. One of the objectives of this study is to develop an effective analytical method for determining transient full-field solutions in the layered medium. A matrix method is developed by expanding the matrix solution obtained directly from the boundary-value problem in the integral transform domain into a power series of the phase-related reflection and transmission matrix which characterizes the multiple reflections and transmissions of all waves in every layer. The transient response of the multi-layered medium is decomposed into infinite wave groups in which the waves are either reflected by, or transmitted through, the interfaces. The connection between the proposed matrix method and the generalized ray method is established for the layered medium in the transform domain. The matrix representation of the solution enables us to calculate the transient response of the layered medium without tracing the ray path manually. The obtained analytical solution can easily be applied to numerical calculations. The double inverse transform is performed based on Cagniard's method and the theoretical transient solution for a layered half-space subjected to an in-plane dynamic force will be presented in part II. An experimental set-up that simulates the plane stress condition for a layered half-space was established to obtain the dynamic displacement response. The experimental result agrees well with the theoretical solution. The proposed methodology in this study can be extended to solve more complicated problems such as waves propagating in three-dimensional space. [References: 30]
机译:本研究研究了弹性瞬变波在平面内载荷作用下在多层介质中的传播。这项研究的目的之一是开发一种有效的分析方法,用于确定分层介质中的瞬态全场解。通过将直接从积分变换域中的边值问题获得的矩阵解扩展为相位相关的反射和透射矩阵的幂级数来发展矩阵方法,该矩阵表征了每一层中所有波的多次反射和透射。多层介质的瞬态响应被分解为无限波组,其中波被界面反射或透射通过界面。在变换域中为分层介质建立了所提出的矩阵方法和广义射线方法之间的联系。解决方案的矩阵表示使我们能够计算分层介质的瞬态响应,而无需手动跟踪射线路径。所获得的分析解决方案可以轻松地应用于数值计算。基于Cagniard方法执行双重逆变换,并且在第二部分中将介绍承受平面内动力的分层半空间的理论瞬态解。建立了用于模拟分层半空间的平面应力条件的实验装置,以获得动态位移响应。实验结果与理论解吻合良好。这项研究中提出的方法可以扩展为解决更复杂的问题,例如在三维空间中传播的波。 [参考:30]

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