In this article, we propose a new numerical method for the computation of electromagnetic modes in an optical fibre. The main difficulty lies in the fact that we have to solve an eigenvalue problem posed in 1. We reduce the problem to a disc with the help of the introduction of non-local boundary op
Numerical computation of the electromagnetic field in the electrodes of a three-phase arc furnace
✍ Scribed by Alfredo Bermúdez; M. Carmen Muñiz; Francisco Pena; Javier Bullón
- Publisher
- John Wiley and Sons
- Year
- 1999
- Tongue
- English
- Weight
- 319 KB
- Volume
- 46
- Category
- Article
- ISSN
- 0029-5981
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✦ Synopsis
In this paper we introduce and numerically solve a mathematical model for numerical simulation of electromagnetic ÿeld in a three-phase electric reduction furnace. The model allows us to compute the current distribution on a cross-section of the three electrodes. A combined boundary element=ÿnite element method is used. Numerical results for real industrial furnaces are shown. As a by-product we compute the torque on the electrodes due to the Lorentz electromagnetic force.
📜 SIMILAR VOLUMES
We present a numerical study based on a Monte Carlo algorithm of the magnetic properties of a mixed Ising ferrimagnetic model on a cubic lattice where spins s AE1=2 and spins S 0; AE1 are in alternating sites on the lattice. We carried out exact ground state calculations and employ a Monte Carlo sim