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Numerical modeling of three-dimensional open elastic waveguides combining semi-analytical finite element and perfectly matched layer methods

机译:三维开放弹性波导组合半分析有限元和完美匹配层方法的数值模拟

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摘要

Among the numerous techniques of non destructive evaluation, elastic guided waves are of particular interest to evaluate defects inside industrial and civil elongated structures owing to their ability to propagate over long distances. However for guiding structures buried in large solid media, waves can be strongly attenuated along the guide axis due to the energy radiation into the surrounding medium, usually considered as unbounded. Hence, searching the less attenuated modes become necessary in order to maximize the inspection distance. In the numerical modeling of embedded waveguides, the main difficulty is to account for the unbounded section. This paper presents a numerical approach combining a semi-analytical finite element method and a perfectly matched layer (PML) technique to compute the so-called trapped and leaky modes in three-dimensional embedded elastic waveguides of arbitrary cross-section. Two kinds of PML, namely the Cartesian PML and the radial PML, are considered. In order to understand the various spectral objects obtained by the method, the PML parameters effects upon the eigenvalue spectrum are highlighted through analytical studies and numerical experiments. Then, dispersion curves are computed for test cases taken from the literature in order to validate the approach.
机译:在非破坏性评价的许多技术中,由于它们在长距离传播的能力,弹性引导波是特别感兴趣的是评估工业和民用细长结构内的缺陷。然而,对于在大型固体介质中掩埋的引导结构,由于进入周围介质的能量辐射,波可以沿着引导轴线强度衰减,通常被认为是无界的。因此,搜索较少的减毒模式是必要的,以便最大化检查距离。在嵌入式波导的数值建模中,主要困难是考虑无限的部分。本文介绍了一种组合半分析有限元方法和完美匹配的层(PML)技术的数值方法,以计算任意横截面的三维嵌入式弹性波导中所谓的被捕获和泄漏模式。考虑两种PML,即笛卡尔PML和径向PML。为了理解通过该方法获得的各种光谱对象,通过分析研究和数值实验突出显示了对特征值谱的PML参数效应。然后,计算色散曲线以用于从文献中取出的测试用例以验证方法。

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