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Sensitivity analysis of a magnetic circuit for non-destructive testing by the magnetic flux leakage technique

机译:磁通泄漏技术对磁路进行无损检测的灵敏度分析

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Monitoring the integrity of structures in the oil and gas industry is a mandatory task that helps preventing both natural disasters and economical losses. This paper presents the optimization of the geometry of a magnetic circuit for the detection of faults in a pipeline by the magnetic flux leakage method. The main goal of these efforts is to perform a sensitivity analysis on the geometrical parameters of the circuit to find configurations that improve the performance of the fault searching tool. The sensitivity analysis of the design parameters of the magnetic circuit is based on numerical evaluations of the performance of the tool using the finite element method. The commercial software selected for this analysis is COMSOL Multiphysics®. The results obtained in this investigation will identify the geometrical configurations that provide better performance, with respect to other configurations, for the detection of the same fault. The findings of this investigation can be utilized as guidelines for the design of magnetic circuits for non-destructive testing using the magnetic flux leakage technique.
机译:监视石油和天然气工业中结构的完整性是一项强制性任务,有助于防止自然灾害和经济损失。本文介绍了通过磁通量泄漏法检测管道故障的磁路几何形状的优化方法。这些工作的主要目标是对电路的几何参数进行灵敏度分析,以找到可改善故障搜索工具性能的配置。磁路设计参数的灵敏度分析是基于使用有限元方法对工具性能进行的数值评估。选择用于该分析的商业软件是COMSOLMultiphysics®。在这项研究中获得的结果将确定与其他配置相比,可以为检测同一故障提供更好性能的几何配置。这项研究的发现可以用作使用磁通量泄漏技术进行无损检测的磁路设计指南。

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