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Interacting effects of clustering defects on MFL signals usinq FEA

机译:聚类缺陷对MFL信号usinq FEA的相互作用

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The magnetic flux leakage (MFL) technique is generally considered to be an efficient and effective non-destructive testing (NDT) method and has been widely used in the oil field inspection industry for the examination of oil and gas pipelines, both new and used. However, the interaction of clustering defects always affects the value of the MFL signal and further complicates the defect-induced MFL signal calibration. In this paper, a non-linear structural finite element analysis (FEA) model is created for the axial MFL tool and the interacting effects of clustering defects on the axial and radial MFL signals are investigated. According to the numerical simulations, the degree of interaction between two adjacent holes is analysed as a function of the holes' edge-to-edge separation by the MFL signal features of known geometries. It clearly illustrates that, at close-to-saturation magnetic flux density (1.8 T), an edge-to-edge separation of at least 4.5x defect radius is found necessary for the MFL method to interpret the two holes independently.
机译:磁通量泄漏(MFL)技术通常被认为是一种有效的无损检测(NDT)方法,并已广泛用于油田检查行业中的石油和天然气管道检查,无论是新管道还是二手管道。但是,聚类缺陷的相互作用始终会影响MFL信号的值,并使缺陷引起的MFL信号校准更加复杂。本文针对轴向MFL工具建立了非线性结构有限元分析(FEA)模型,并研究了聚类缺陷对轴向和径向MFL信号的相互作用。根据数值模拟,通过已知几何形状的MFL信号特征,分析两个相邻孔之间的相互作用程度,作为孔边到边分离的函数。它清楚地说明,在接近饱和磁通密度(1.8 T)时,发现至少4.5倍缺陷半径的边对边间距对于MFL方法独立解释两个孔是必需的。

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