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Time-domain spectral finite element method for analysis of torsional guided waves scattering and mode conversion by cracks in pipes

机译:时域光谱有限元方法,用于分析扭转引导波散射和管道裂缝的模式转换

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This paper presents a computationally efficient time-domain spectral finite element method (SFEM) and a crack model to take into account guided wave propagation, scattering and mode conversion in pipes. The proposed SFEM couples torsional and flexural motions of guided waves. A cracked element is proposed to predict the scattering and mode conversion effect of guided wave interaction with the crack in the pipes. The proposed SFEM and cracked element are verified by 3D finite element and experimental data. The results show that the proposed SFEM is able to predict the torsional guided wave propagation, scattering and mode conversion accurately. A series of numerical and experimental case studies are carried out to investigate the effect of the crack size on the scattering and mode converted guided waves. The findings of the study provide physical insights into the guided wave scattering and mode conversion and further advance the development of damage detection using guided waves. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了计算上有效的时域光谱有限元方法(SFEM)和裂缝模型,以考虑管道的导向波传播,散射和模式转换。拟议的SFEM致扭转和弯曲运动的引导波。提出了一种破裂的元件,以预测引导波相互作用与管道中的裂缝的散射和模式转换效应。所提出的SFEM和裂纹元件由3D有限元和实验数据验证。结果表明,所提出的SFEM能够精确地预测扭转导波传播,散射和模式转换。进行了一系列数值和实验性案例研究,以研究裂缝尺寸对散射和模式转换引导波的影响。该研究的调查结果为引导波散射和模式转换提供了物理洞察,并进一步推进了使用引导波的损坏检测的发展。 (c)2019 Elsevier Ltd.保留所有权利。

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