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Numerical simulation of the eddy current effects on the arc splitting process

  • Yang Fei
  • , Rong Mingzhe
  • , Wu Yi
  • , Sun Hao
  • , Ma Ruiguang
  • , Niu Chunping
  • , Fei Yang
  • , Mingzhe Rong
  • , Yi Wu
  • , Hao Sun
  • , Ruiguang Ma
  • , Chunping Niu
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

This paper focuses on a numerical simulation of the arc plasma behavior in the arc splitting process, considering the eddy currents in the electrodes and the splitter plate. Based on three-dimensional (3D) magneto-hydrodynamic (MHD) theory, a thin layer of nonlinear electrical resistance elements is used in the model to represent the voltage drop of plasma sheath and the formation of new arc root in order to include the arc splitting process in the simulation. In the arcing process, eddy currents in metal parts are generated by a time-varying magnetic field. The arc model is calculated with the time-varying magnetic field term, so that the eddy current effects can be considered. The effect of nonlinear permeability of a ferromagnetic material is also involved in the calculation. Using the simulation results for the temperature, velocity and current density distribution, the arc splitting process is analyzed in detail. The calculated results are compared with the simulation neglecting eddy currents.

Original languageEnglish
Pages (from-to)974-979
Number of pages6
JournalPlasma Science and Technology
Volume14
Issue number11
DOIs
StatePublished - Nov 2012

Keywords

  • arc plasma
  • eddy current
  • low-voltage
  • simulation

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