• DocumentCode
    765496
  • Title

    Numerical study on influences of barrier arrangements on dielectric barrier discharge characteristics

  • Author

    Kang, Woo Seok ; Park, Jin Myung ; Kim, Yongho ; Hong, Sang Hee

  • Author_Institution
    Dept. of Nucl. Eng., Seoul Nat. Univ., South Korea
  • Volume
    31
  • Issue
    4
  • fYear
    2003
  • Firstpage
    504
  • Lastpage
    510
  • Abstract
    A numerical study has been carried out to understand the influences of barrier arrangements on the discharge characteristics of dielectric barrier discharge (DBD). A 1.5-dimensional (1.5-D) modeling is considered in the arrangements of bare, single-barrier, and double-barrier electrodes while a two-dimensional (2-D) approach is employed in a configuration of ferroelectric packed discharge (FPD). Numerical simulations show that the evolution of microdischarges in DBD occurs sequentially in the three distinctive phases of avalanche, streamer, and decay, and that the dielectric barriers make streamer discharges stabilized and sustained in lowered electric fields without transition to spark compared with no barrier case. Especially, the highly nonuniform strong electric field effect created by the pellets appears to be formed in FPD, which enables the flue gas cleaning to be expected to enhance the decomposition efficiency.
  • Keywords
    discharges (electric); plasma dielectric properties; sparks; 1.5-dimensional modeling; bare electrodes; barrier arrangement effect; barrier arrangements; decomposition efficiency; dielectric barrier discharge; dielectric barrier discharge characteristics; dielectric barriers; discharge characteristics; double-barrier electrodes; ferroelectric packed discharge; flue gas cleaning; lowered electric fields; microdischarges; numerical modeling; numerical simulations; numerical study; single-barrier electrodes; spark; streamer discharges; two-dimensional approach; Atmospheric-pressure plasmas; Dielectrics; Electrodes; Fault location; Ferroelectric materials; Flue gases; Inductors; Numerical models; Numerical simulation; Plasma applications;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2003.815469
  • Filename
    1221820