• Title of article

    Two-dimensional simulation of argon dielectric barrier discharge (DBD) plasma actuator with COMSOL Multiphysics

  • Author/Authors

    Mehrabifard ، Ramin Department of Physics - Institute for Plasma Research - Kharazmi University

  • From page
    43
  • To page
    50
  • Abstract
    Dielectric barrier discharge (DBD) plasma is used for various applications. DBD is also one of the most efficient and low-cost methods for active fluid flow control. In this study, a detailed physical model of DBD in atmospheric pressure at 1 kV DC voltage is developed with COMSOL Multiphysics software. Argon gas is also used as a background gas and electrodes are assumed to be copper. Plasma parameters such as electron and ion density, electric field, potential, and temperature for different gap distances of electrodes (1.0 mm, 0.9 mm, 0.8 mm) and different dielectric type (Quartz, Silica Glass, Mica). The results of the simulation show that the longitudinal distance of the grounded electrodes to the power electrodes has a direct influence on parameters such as electron temperature, and electron and ion density which are the main factors of fluid flow control. These parameters have the maximum value when Mica is used as a dielectric and the lowest value when Silica Glass is utilized.
  • Keywords
    Dielectric Barrier Discharge , Argon Plasma , Plasma Actuator , Body Force , COMSOL Multiphysics , Gas Discharge
  • Journal title
    Radiation Physics and Engineering
  • Journal title
    Radiation Physics and Engineering
  • Record number

    2750271