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1
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0031097549
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An effective 3-D finite element scheme for computing electromagnetic field distortions due to defects in eddy-current nondestructive evaluation
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Mar.
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Z. Badics et al., "An effective 3-D finite element scheme for computing electromagnetic field distortions due to defects in eddy-current nondestructive evaluation," IEEE Trans. Magn., vol. 33, no. 2, pp. 1012-1020, Mar. 1997.
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IEEE Trans. Magn.
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Badics, Z.1
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33947621149
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A perturbation method for computing field distortions due to conductive regions with h-conform magnetodynamic finite element formulations
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Apr.
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P. Dular and R. V. Sabariego, "A perturbation method for computing field distortions due to conductive regions with h-conform magnetodynamic finite element formulations," IEEE Trans. Magn., vol. 43, no. 4, pp. 1293-1296, Apr. 2007.
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IEEE Trans. Magn.
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Dular, P.1
Sabariego, R.V.2
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3
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34547850641
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Sub-domain finite element method for efficiently considering strong skin and proximity effects
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P. Dular, R. V. Sabariego, J. Gyselinck, and L. Krähenbühl, "Sub-domain finite element method for efficiently considering strong skin and proximity effects," COMPEL, vol. 26, no. 4, pp. 974-985, 2007.
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COMPEL
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Dular, P.1
Sabariego, R.V.2
Gyselinck, J.3
Krähenbühl, L.4
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4
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38149026277
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Subdomain perturbation finite element method for strong skin and proximity effects in inductors
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P. Dular, R. V. Sabariego, and L. Krähenbühl, "Subdomain perturbation finite element method for strong skin and proximity effects in inductors," COMPEL, vol. 27, no. 1, pp. 72-84, 2008.
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(2008)
COMPEL
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Dular, P.1
Sabariego, R.V.2
Krähenbühl, L.3
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5
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0027559259
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Thin layers in electrical engineering. Example of shell models in analyzing eddy-currents by boundary and finite element methods
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Mar.
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L. Krähenbühl and D. Muller, "Thin layers in electrical engineering. Example of shell models in analyzing eddy-currents by boundary and finite element methods," IEEE Trans. Magn., vol. 29, no. 2, pp. 1450-1455, Mar. 1993.
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Krähenbühl, L.1
Muller, D.2
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6
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0034221447
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Dual magnetodynamic formulations and their source fields associated with massive and stranded inductors
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Jul.
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P. Dular, P. Kuo-Peng, C. Geuzaine, N. Sadowski, and J. P. A. Bastos, "Dual magnetodynamic formulations and their source fields associated with massive and stranded inductors," IEEE Trans. Magn., vol. 36, no. 4, pp. 3078-3081, Jul. 2000.
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Dular, P.1
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Sadowski, N.4
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7
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22044440279
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Dual finite element formulations for lumped reluctances coupling
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May
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P. Dular, J. Gyselinck, T. Henneron, and F. Piriou, "Dual finite element formulations for lumped reluctances coupling," IEEE Trans. Magn., vol. 41, no. 5, pp. 1396-1399, May 2005.
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IEEE Trans. Magn.
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Dular, P.1
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Piriou, F.4
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8
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0033121770
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A galerkin projection method for mixed finite elements
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May
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C. Geuzaine, B. Meys, F. Henrotte, P. Dular, and W. Legros, "A galerkin projection method for mixed finite elements," IEEE Trans. Magn., vol. 35, no. 3, pp. 1438-1441, May 1999.
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IEEE Trans. Magn.
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Geuzaine, C.1
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Legros, W.5
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