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Calculation of 3D eddy current fields using both electric and magnetic vector potential in conducting regions

机译:使用导电区域中的电和磁矢量电势来计算3D涡流场

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Most papers concerning the calculation of 3D eddy current problems are using a combination of a vector potential and a scalar potential to solve the electromagnetic field in conducting regions. This paper presents the A/spl I.oarr/T/spl I.oarr/ formulation using both the magnetic vector potential A/spl I.oarr/ and the electric vector potential T/spl I.oarr/ for the eddy current regions. Since nodal vector potentials with continuous normal components have accuracy problems at interfaces of regions with different permeabilities, edge elements are used for both potentials. The advantages of the presented formulation compared to the mentioned well-known formulations are described in detail. The formulation is applied on the computation of the 3D time-harmonic eddy current field of an induction furnace and is compared to other formulations as well.
机译:关于3D涡流问题计算的大多数论文都使用矢量电势和标量电势的组合来求解导电区域中的电磁场。本文利用涡流区域的磁矢量电势A / spl I.oarr /和电矢量电势T / spl I.oarr /提出了A / spl I.oarr / T / spl I.oarr /公式。由于具有连续法向分量的节点矢量势在具有不同磁导率的区域的界面处具有精度问题,因此将边缘元素用于这两个势。详细描述了与提到的公知制剂相比,本发明制剂的优点。该公式应用于感应炉的3D时间谐波涡流场的计算,并且也与其他公式进行了比较。

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