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Simulation Methods for Guided Wave-Based Structural Health Monitoring: A Review

机译:导波基结构健康监测的仿真方法综述

摘要

This paper reviews the state-of-the-art in numerical wave propagation analysis. The main focus in that regard is on guided wave-based structural health monitoring (SHM) applications. A brief introduction to SHM and SHM-related problems is given, and various numerical methods are then discussed and assessed with respect to their capability of simulating guided wave propagation phenomena. A detailed evaluation of the followingudmethods is compiled: (i) analytical methods, (ii) semi-analytical methods, (iii) the local interaction simulation approach (LISA), (iv) finite element methods (FEMs), and (v) miscellaneous methods such as mass–spring lattice models (MSLMs), boundary element methods (BEMs), and fictitious domain methods. In the framework of the FEM, both time and frequency domain approaches are covered, and the advantages of using high order shape functions are also examined.
机译:本文回顾了数值波传播分析的最新技术。在这方面,主要重点是基于导波的结构健康监测(SHM)应用。简要介绍了SHM和与SHM相关的问题,然后讨论了各种数值方法,并就它们模拟导波传播现象的能力进行了评估。汇编了以下 udmethod的详细评估:(i)分析方法,(ii)半分析方法,(iii)局部相互作用模拟方法(LISA),(iv)有限元方法(FEM),和(v )其他方法,例如质量-弹簧晶格模型(MSLM),边界元素方法(BEM)和虚拟域方法。在FEM的框架中,时域和频域方法均被涵盖,并且还研究了使用高阶形状函数的优势。

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