FE solution of a 3D-thermoelectrical model for metallurgical electrodes

  1. Salgado, P.
  2. Bermúdez, A.
  3. Bullón, J.
Libro:
Numerical Mathematics and Advanced Applications

ISBN: 9788847021679

Ano de publicación: 2003

Páxinas: 233-242

Tipo: Capítulo de libro

DOI: 10.1007/978-88-470-2089-4_21 GOOGLE SCHOLAR lock_openAcceso aberto editor

Referencias bibliográficas

  • Bermúdez, A., Bullón, J., Pena, F. (1998): A finite element method for the thermoelectrical modelling of electrodes. Comm. Numer. Methods Engrg. 14, 581–593
  • Bermúdez, A., Bullón, J., Muñiz, M., Pena, F. (1999): Numerical computation of the electromagnetic field in the electrodes of a three-phase arc furnace. Internal. J. Numer. Methods Engrg. 46, 649–658
  • Bermúdez. A., Muñoz-Sola, R. (1999): Existence of solution of a coupled problem arising in the thermoelectrical simulation of electrodes. Quart. Appl. Math. 57, 621–636
  • Bermúdez, A., Bullón, J., Pena, F., Salgado, P. (2001): A numerical method for the evolutionary sate of a Elsa electrode. Finite Elem. Anal. Des., to appear
  • Bermúdez, A., Rodríguez, R., Salgado, P. (2001): A finite element method with Lagrange multipliers for low-frequency harmonic Maxwell equations. Pre-publicacion 2001-14. Departamento de Ingeniería Matemática, Universidad de Concepción, Chile, submitted
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  • Bullón, J., Bermúdez, A. (1996): Development in 1996 of the new electrode for silicon metal. In: Electric Furnace Conference Proceedings, vol. 54. Iron & Steel Society, Warrendale, PA, pp. 139–144
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  • Innvær, R., Olsen, L. (1980): Practical use of mathematical models for Soderberg electrodes. In: Electric Furnace Conference Proceedings, vol. 38. Iron & Steel Society, Warrendale, PA, pp. 40–47
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