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An effective 3-D finite element scheme for computing electromagnetic field distortions due to defects in eddy-current nondestructive evaluation

机译:一种有效的3D有限元方案,用于计算由于涡流无损评估中的缺陷而引起的电磁场畸变

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摘要

A new three-dimensional (3-D) finite element scheme for eddy-current nondestructive evaluation (NDE) problems is described that calculates directly the perturbation of the electromagnetic field due to defects in metallic specimens. The computational costs of such problems are usually very high using available finite element schemes, and the new scheme is supposed to lower these costs. The basic concept, the direct calculation of the field distortion due to the flaw, is provided for rather general defects, but the detailed finite element scheme is discussed for zero-conductivity flaws. The source terms of the formulation are determined from the unperturbed field, and the impedance change due to a defect can be calculated as an integral over the flaw. A finite element scheme for solving problems with crack-type defects is also presented as a limiting case of the formulation for zero-conductivity flaws. Solutions of a benchmark problem from the testing electromagnetic analysis methods (TEAM) workshop series (problem number 15/2) and of tube problems with artificial slots are presented and compared to experimental data.
机译:描述了一种用于涡流无损评估(NDE)问题的新的三维(3-D)有限元方案,该方案直接计算由于金属样本中的缺陷而产生的电磁场的扰动。使用可用的有限元方案,此类问题的计算成本通常很高,而新方案则可以降低这些成本。对于相当普遍的缺陷,提供了基本概念,即由缺陷引起的场畸变的直接计算,但针对零电导性缺陷讨论了详细的有限元方案。根据不受干扰的场确定配方的源项,并且可以将由于缺陷引起的阻抗变化计算为缺陷上的积分。还提出了一种解决裂纹型缺陷问题的有限元方案,作为零电导率缺陷公式的一种限制情况。提出了测试电磁分析方法(TEAM)工作坊系列(问题编号15/2)中基准问题的解决方案,以及带有人工槽的管道问题的解决方案,并将其与实验数据进行了比较。

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