Magnetohydrodynamic Simulation and Particle Simulation for Vacuum Circuit Breakers
Author:
Affiliation:
1. 三菱電機(株)
2. 金沢大学
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Link
https://www.jstage.jst.go.jp/article/ieejjournal/144/8/144_508/_pdf
Reference15 articles.
1. (1) E. Schade and D. L. Shmelev : “Numerical Simulation of High-Current Vacuum Arcs with an External Axial Magnetic Field”, IEEE Trans. P. S., Vol.31, No.5, pp.890-901 (2003)
2. (2) L. Wang, S. Jia, Z. Shi, and M. Rong : “Numerical Simulation of vacuum arc under different axial magnetic field”, J. Phys. D : Appl. Phys., Vol.38, pp.1034-1041 (2005)
3. (3) W. Hartmann, A. Hauser, A. Lawall, R. Renz, and N. Wenzel : “The 3D numerical simulation of a transient vacuum arc under realistic spatial AMF profiles”, 24th ISDEIV 2010, Braunschweig, Germany, pp.285-288 (2010)
4. (4) S. Takahashi, K. Arai, O. Morimiya, S. Kaneko, and S. Okabe : “A PIC-MCC Simulation of the High-Voltage Interruption Ability of a Vacuum Interrupter”, IEEE Trans. P. S., Vol.35, No.4, pp.912-919 (2007)
5. (5) P. Sarrailh, L. Garrigues, G. J. M. Hagelaar, G. Sandolache, S. Rowe, B. Jusselin, and J. P. Boeuf : “Expanding sheath in a bounded plasma in the context of the post-arc phase of a vacuum arc”, J. Phys. D : Appl. Phys., Vol.41, 015203 (2008)
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