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Efficient analytical modelling for Pulsed Remote Field Eddy Current evaluation of stratified tubular structures

机译:有效分析模拟分层管状结构的脉冲远程场涡流评价

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Stratified Tubular Structures (STSs), such as pipeline, are extensively adopted in such engineering fields as nuclear, petroleum, chemical and aerospace, etc. Wall-thinning Defects (WTDs) are usually found within in-service STSs, and taken as critical flaws which demand to be detected and assessed during STS inspection. It is crucial to non-destructively evaluate the integrity of STSs, particularly WTDs before catastrophic accidents occur. Pulsed Remote Field Eddy Current technique (PRFEC) has been found applicable for evaluation of WTDs in ferromagnetic STSs. In this paper, an efficient analytical model for PRFEC of STSs subject to WTDs is established based on the Extended Truncated Region Eigenfunction Expansion (ETREE). The closed-form expressions of PRFEC responses to WTDs in STSs are formulated. The model is verified by Finite Element Modelling (FEM), and found promising in fast computation of PRFEC signals with high accuracy. The research benefits the inverse problems regarding PRFEC of WTDs in STSs.
机译:作为核,石油,化学和航空航天等,在这种工程领域等分层管状结构(STS)被广泛地采用。壁 - 稀释缺陷(WTD)通常在役的STS中找到,并作为临界缺陷在STS检查期间要求检测和评估。在灾难性事故发生之前,不破坏性地评估STS的完整性,特别是WTD是至关重要的。发现脉冲远程场涡流技术(PRFEC)已经发现适用于铁磁性STS中的WTD。本文基于延伸的截短区域特征函数扩展(Etree),建立了对WTDS的STSS的PRFec的有效分析模型。制定了PRFec对STS中WTDS的PRFec反应的闭合表达。该模型通过有限元建模(FEM)验证,并在高精度的快速计算中发现了有希望的高精度。该研究有利于STS中WTDS PRFec的逆问题。

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