• DocumentCode
    813222
  • Title

    Optical investigations of dynamic vacuum arc mode changes with different axial magnetic field contacts

  • Author

    Shang, Wenkai ; Dullni, Edgar ; Fink, Harald ; Kleberg, Ingmar ; Schade, Ekkehard ; Shmelev, Dmitry Leonidovich

  • Author_Institution
    ABB Calor Emag Mittelspannung GmbH, Ratingen, Germany
  • Volume
    31
  • Issue
    5
  • fYear
    2003
  • Firstpage
    923
  • Lastpage
    928
  • Abstract
    By using a high-speed charge-coupled device (CCD) video technique, three different axial magnetic field contact systems (i.e., unipolar, bipolar, and quadrupolar systems) are investigated at an arc current of 10 kA. Video recordings were compared to computer simulations of light emission emitted at the side-on of diffuse and diffuse columnar arcs. The computer images reproduced typical trends, such as stronger light intensities in front of the cathode caused by higher-plasma densities in this region. A low-current dc vacuum arc was initiated by contact separation before the high current was injected at a fixed contact distance of 10 mm. Videos were taken from two directions perpendicular to each other to localize the vacuum arc properly. From these investigations, the transient development of vacuum arc under different axial magnetic field profiles can be visualized. The results were interpreted with respect to the behavior of the vacuum arc in the second half cycle after an eventual reignition.
  • Keywords
    plasma diagnostics; plasma magnetohydrodynamics; vacuum arcs; arc current; axial magnetic field contact systems; axial magnetic field contacts; axial magnetic field profiles; bipolar systems; computer images; computer simulations; contact separation; diffuse columnar arcs; dynamic vacuum arc mode changes; high-speed charge-coupled device video technique; light emission; low-current do vacuum arc; optical investigations; quadrupolar systems; second half cycle; unipolar systems; vacuum arc; video recordings; Charge coupled devices; Contacts; Electrodes; High speed optical techniques; Magnetic fields; Magnetic flux density; Magnetohydrodynamics; Switches; Vacuum arcs; Video recording;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2003.818426
  • Filename
    1240036