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利用互易定理求解管道中缺陷对最低轴对称扭转波模式的散射的封闭形式解。

Use of the reciprocity theorem for a closed form solution of scattering of the lowest axially symmetric torsional wave mode by a defect in a pipe.

作者信息

Lee Jaesun, Achenbach Jan D, Cho Younho

机构信息

New Transportation Systems Research Center, Korea Railroad Research Institute, Uiwang, Gyeonggi 16105, Republic of Korea.

Center for Quality Engineering and Failure Prevention, Northwestern University, Evanston, IL 60208, USA.

出版信息

Ultrasonics. 2018 Mar;84:45-52. doi: 10.1016/j.ultras.2017.10.011. Epub 2017 Oct 13.

DOI:10.1016/j.ultras.2017.10.011
PMID:29073487
Abstract

Guided waves can effectively be used for inspection of large scale structures. Surface corrosion is often found as major defect type in large scale structures such as pipelines. Guided wave interaction with surface corrosion can provide useful information for sizing and classification. In this paper, the elastodynamic reciprocity theorem is used to formulate and solve complicated scattering problems in a simple manner. The approach has already been applied to scattering of Rayleigh and Lamb waves by defects to produce closed form solutions of amplitude of scattered waves. In this paper, the scattering of the lowest axially symmetric torsional mode, which is widely used in commercial applications, is analyzed by the reciprocity theorem. In the present paper, the theorem is used to determine the scattering of the lowest torsional mode by a tapered defect that was earlier considered experimentally and numerically by the finite element method. It is shown that by the presented method it is simple to obtain the ratio of amplitudes of scattered torsional modes for a tapered notch. The results show a good agreement with earlier numerical results. The wave field superposition technique in conjunction with the reciprocity theorem simplifies the solution of the scattering problem to yield a closed form solution which can play a significant role in quantitative signal interpretation.

摘要

导波可有效地用于大型结构的检测。在诸如管道等大型结构中,表面腐蚀常常是主要的缺陷类型。导波与表面腐蚀的相互作用可为尺寸测量和分类提供有用信息。本文利用弹性动力学互易定理以简单的方式来公式化并求解复杂的散射问题。该方法已被应用于缺陷对瑞利波和兰姆波的散射,以得出散射波振幅的封闭形式解。本文通过互易定理分析了在商业应用中广泛使用的最低轴对称扭转模式的散射。在本文中,该定理用于确定由锥形缺陷引起的最低扭转模式的散射,该锥形缺陷先前已通过有限元方法进行了实验和数值研究。结果表明,通过本文提出的方法,很容易获得锥形切口散射扭转模式的振幅比。结果与早期的数值结果吻合良好。波场叠加技术与互易定理相结合,简化了散射问题的求解,得出封闭形式的解,这在定量信号解释中可发挥重要作用。

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