Model of a diffuse column vacuum arc with cathode jets burning in parallel with a high-current plasma column

被引:39
|
作者
Keidar, M [1 ]
Schulman, MB
Taylor, ED
机构
[1] Mine Safety Appliances Co, Cranberry Township, PA 16066 USA
[2] Eaton Elect, Horseheads, NY 14845 USA
[3] Univ Michigan, Dept Aerosp Engn, Ann Arbor, MI 48109 USA
关键词
anode activity; anode sheath; arc appearance; arc modes; axial magnetic field (AMF); cathode spot plasma jet; diffuse arc; plasma expansion; plasma voltage; vacuum arc;
D O I
10.1109/TPS.2004.828535
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
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.
引用
收藏
页码:783 / 791
页数:9
相关论文
共 50 条
  • [21] Fractal dimension of cathode spots in a high-current vacuum arc thruster
    Michaux, Etienne
    Vinci, Alfio E.
    Mazouffre, Stephane
    VACUUM, 2023, 215
  • [22] Numerical simulation on the motion of cathode spots in high-current vacuum arc
    Song, Xiaochuan
    Shi, Zongqian
    Jia, Shenli
    Wang, Lijun
    ISDEIV 2010: XXIVTH INTERNATIONAL SYMPOSIUM ON DISCHARGES AND ELECTRICAL INSULATION IN VACUUM, 2010, : 296 - 299
  • [23] THE HIGH-CURRENT METAL VAPOR ARC COLUMN BETWEEN SEPARATING ELECTRODES
    HEBERLEIN, JVR
    GORMAN, JG
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 1980, 8 (04) : 283 - 288
  • [24] A Generalized Criterion of Transition to the Diffuse Column Vacuum Arc
    Keidar, Michael
    Taylor, Eric D.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2009, 37 (05) : 693 - 697
  • [25] CATHODE PLASMA FORMATION IN PULSED HIGH-CURRENT VACUUM DIODES
    HINSHELWOOD, DD
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 1983, 11 (03) : 188 - 196
  • [26] High-current plasma channel produced with a narrow gas column
    V. F. Basmanov
    G. V. Karpov
    B. I. Model'
    S. T. Nazarenko
    V. A. Savchenko
    A. N. Subbotin
    A. S. Fedotkin
    F. G. Shalata
    Plasma Physics Reports, 2001, 27 : 748 - 753
  • [27] High-current plasma channel produced with a narrow gas column
    Basmanov, VF
    Karpov, GV
    Model', BI
    Nazarenko, ST
    Savchenko, VA
    Subbotin, AN
    Fedotkin, AS
    Shalata, FG
    PLASMA PHYSICS REPORTS, 2001, 27 (09) : 748 - 753
  • [28] Tomographic interferometry of a filtered high-current vacuum arc plasma
    Warr, George B.
    Tarrant, Richard N.
    Bilek, Marcela M. M.
    McKenzie, David R.
    Harris, Jeffrey H.
    Howard, John
    Blackwell, Boyd D.
    Journal of Applied Physics, 2007, 101 (07):
  • [29] Observation of the Plasma Plume at the Anode of High-Current Vacuum Arc
    Batrakov, Alexander V.
    Popov, Sergey A.
    Schneider, Anton V.
    Sandolache, Gabriela
    Rowe, Stephen William
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2011, 39 (06) : 1291 - 1295
  • [30] A high-current pulsed cathodic vacuum arc plasma source
    Oates, TWH
    Pigott, J
    Mckenzie, DR
    Bilek, MMM
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2003, 74 (11): : 4750 - 4754