DocumentCode :
2913801
Title :
On the modeling of a diffuse vacuum arc in the presence of an axial magnetic field
Author :
Langlois, Y. ; Chapelle, P. ; Jardy, A. ; Gentils, F.
Author_Institution :
Inst. Jean Lamour, Ecole des Mines de Nancy, Nancy, France
fYear :
2010
fDate :
Aug. 30 2010-Sept. 3 2010
Firstpage :
355
Lastpage :
358
Abstract :
A mathematical model a a diffuse vacuum arc in an axial magnetic field (AMF) has been developed with the ultimate aim to predict the limit of the diffuse mode operating range as well as contribute to a better understanding of the mechanisms that cause the arc to switch from the diffuse mode to a different (more confined) mode. The focus is on the interelectrode plasma region, from the mixing region of the cathode spots to the anode. The model is based on a 2D two-fluid hydrodynamic description of the fully ionized plasma, including consideration of the energy balance equations for both ions and electrons. It incorporates the influence of an external axial magnetic field and takes full account of the effect of the self generated magnetic field, including the field components induced by the azimuthal current density. The possibility of both supersonic and subsonic plasma flow regimes is considered. Simulations results are obtained for a wide range of arcing conditions. Their analysis provides useful insights into the influence of various parameters, such as the arc current and the presence of an AMF, on plasma properties and current constriction.
Keywords :
cathodes; current density; hydrodynamics; magnetic fields; plasma applications; supersonic flow; vacuum arcs; 2D two-fluid hydrodynamic description; AMF; anode; arc current; azimuthal current density; cathode spots; current constriction; diffuse mode operating range; diffuse vacuum arc; energy balance equations; external axial magnetic field; field components; fully ionized plasma; interelectrode plasma region; mixing region; plasma property; self generated magnetic field; subsonic plasma flow regimes; supersonic plasma flow regimes; Anodes; Cathodes; Ions; Magnetic fields; Mathematical model; Plasmas; Vacuum arcs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Discharges and Electrical Insulation in Vacuum (ISDEIV), 2010 24th International Symposium on
Conference_Location :
Braunschweig
ISSN :
1093-2941
Print_ISBN :
978-1-4244-8367-9
Electronic_ISBN :
1093-2941
Type :
conf
DOI :
10.1109/DEIV.2010.5625820
Filename :
5625820
Link To Document :
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