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Issue title: Special Volume: Proceedings of the eleventh International Symposium on Applied Electromagnetics and Mechanics ISEM-Versailles ISEM 03
Article type: Research Article
Authors: Gagnoud, Anniea
Affiliations: [a] CNRS – EPM, ENSHMG BP 95, 1340 Rue de la Piscine 38402 Saint Martin d'Hères Cedex, France. Tel.: +33 4 76 82 52 52; Fax: +33 4 76 82 52 49; E-mail: gagnoud@grenoble.cnrs.fr
Abstract: A 3D numerical method has been developed to model the coils used in inductive processes. The method is based on Ohm's law and Biot and Savart's law and can be used to solve eddy current problems at mid-range or high frequencies. The unknowns are the current density and electrical potential. The formulation involves singular integrals and produces a fully linear system, as in the boundary integral method. For these frequencies, only the surface of the conductors needs to be meshed. To obtain a general approach, the interpolation, derivation and integration techniques commonly used in the finite element method are employed. A number of examples show the interest of this method.
Keywords: eddy current, 3D numerical method, integral method, electric impedance
DOI: 10.3233/JAE-2004-638
Journal: International Journal of Applied Electromagnetics and Mechanics, vol. 19, no. 1-4, pp. 613-617, 2004
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