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Application of Dirichlet-to-Neumann Map Boundary Condition for Low-Frequency Electromagnetic Problems

机译:Dirichlet-Neumann地图边界条件在低频电磁问题中的应用

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摘要

In this article, we present a differential formulation combined with an exact boundary condition based on a Dirichlet-to-Neumann (DtN) operator, and its applications to eddy current problems. A numerical model for the eddy current problem is derived using a reduced vector potential formulation combined with analytic expression of a DtN operator on an appropriate canonical boundary. The main advantage of this method is the improved accuracy and reduced computational cost compared to conventional approaches. The effectiveness of the proposed formulation is demonstrated in eddy current nondestructive testing applications for predicting the induced current density distribution. The numerical results for two model problems are presented: a conducting sphere in a uniform magnetic field and an eddy current probe inspection of a conducting plate with a volumetric defect.
机译:在本文中,我们呈现了一种基于Dirichlet-to-Neumann(DTN)操作者的精确边界条件的差异配方,以及其在涡流问题上的应用。使用减少的向量电位制剂来导出涡流问题的数值模型,所述传染料配方结合了DTN操作者对适当的规范边界的分析表达。与传统方法相比,该方法的主要优点是改善的准确性和降低的计算成本。所提出的制剂的有效性在涡流非破坏性测试应用中证明了用于预测感应电流密度分布。提出了两个模型问题的数值结果:均匀磁场中的导电球和具有体积缺陷的导电板的涡流探针检查。

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