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首页> 外文期刊>IEEE Transactions on Magnetics >Boundary element analysis method for 3-D transient eddy current problems based on the second order vector potential formulation
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Boundary element analysis method for 3-D transient eddy current problems based on the second order vector potential formulation

机译:基于二阶矢量势公式的3-D瞬态涡流问题的边界元分析方法

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摘要

The authors consider a boundary-element method (BEM) for 3-D transient eddy current problems formulated in terms of the second-order vector potential (SOVP). Indirect boundary integral equations are derived using the time-dependent fundamental solution and fictitious source densities. In the numerical implementation, a time-stepping convolution approach is adopted to eliminate the need for volume discretization and domain integration. Numerical results of a benchmark problem demonstrate the validity and accuracy of the technique. The proposed scheme, compared with an alternative volume-based recurring initial condition approach, not only provides considerable reduction in the manpower requirements for modeling, but also permits a more precise solution, especially for 3-D problems.
机译:作者考虑了用二阶矢量势(SOVP)表示的3D瞬态涡流问题的边界元方法(BEM)。间接边界积分方程是使用时间相关的基本解和虚拟源密度导出的。在数值实现中,采用了时间步进卷积方法来消除对体积离散化和域积分的需要。基准问题的数值结果证明了该技术的有效性和准确性。与替代的基于体积的重复性初始条件方法相比,提出的方案不仅可以大大减少建模所需的人力,而且可以提供更精确的解决方案,尤其是对于3D问题。

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