DocumentCode :
1018851
Title :
Model of a diffuse column vacuum arc with cathode jets burning in parallel with a high-current plasma column
Author :
Keidar, Michael ; Schulman, Michael Bruce ; Taylor, Erik D.
Author_Institution :
Eaton Electr., Horseheads, NY, USA
Volume :
32
Issue :
2
fYear :
2004
fDate :
4/1/2004 12:00:00 AM
Firstpage :
783
Lastpage :
791
Abstract :
The behavior of the high-current diffuse columnar arc in vacuum is considered. A single cathode spot jet appearing to the side of a high-current plasma column is studied using a two-dimensional magnetohydrodynamic model. The plasma expansion and current flow in the jet are affected by the presence of the main column and the applied axial magnetic field (AMF). Increasing the current in the plasma column causes the arc voltage to increase, in turn affecting the displaced parallel jet. For instance, the current density near the anode for the parallel jet increases by factor of 1.8 in the case of a 15 kA plasma column. In this case, its anode sheath potential drop increases from a negative voltage drop of about 1 V toward zero. When the arc voltage exceeds a critical value, the anode sheath potential of the jet changes from negative to positive. The displaced jet can continue burning only if the anode supplies a significant fraction of its near-anode plasma. We apply this model to study experimentally observed changes in the high-current arc behavior in an AMF. The observed mode transitions of the arc column appear to be related to a critical arc voltage condition.
Keywords :
plasma density; plasma instability; plasma jets; plasma magnetohydrodynamics; plasma sheaths; plasma transport processes; vacuum arcs; 15 kA; anode sheath potential; applied axial magnetic field; arc voltage; cathode jets; critical arc voltage; current density; diffuse column vacuum arc; displaced parallel jet; high-current plasma column; mode transitions; near-anode plasma; plasma current flow; plasma expansion; two-dimensional magnetohydrodynamic model; Anodes; Cathodes; Current density; Magnetic fields; Plasma density; Plasma sheaths; Plasma stability; Predictive models; Vacuum arcs; Voltage; AMF; Anode activity; anode sheath; arc appearance; arc modes; axial magnetic field; cathode spot plasma jet; diffuse arc; plasma expansion; plasma voltage; vacuum arc;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2004.828535
Filename :
1308556
Link To Document :
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