Advanced Search+
YANG Fei(杨飞), MA Ruiguang ( 马瑞光), WU Yi( 吴翊), SUN Hao( 孙昊), NIU Chunping( 纽春萍), RONG Mingzhe(荣命哲). Numerical study on arc plasma behavior during arc commutation process in direct current circuit breaker[J]. Plasma Science and Technology, 2012, 14(2): 167-171. DOI: 10.1088/1009-0630/14/2/16
Citation: YANG Fei(杨飞), MA Ruiguang ( 马瑞光), WU Yi( 吴翊), SUN Hao( 孙昊), NIU Chunping( 纽春萍), RONG Mingzhe(荣命哲). Numerical study on arc plasma behavior during arc commutation process in direct current circuit breaker[J]. Plasma Science and Technology, 2012, 14(2): 167-171. DOI: 10.1088/1009-0630/14/2/16

Numerical study on arc plasma behavior during arc commutation process in direct current circuit breaker

  • This paper focuses on the numerical investigation of arc plasma behavior during arc commutation process in a medium-voltage direct current circuit breaker (DCCB) contact system. A three-dimensional magneto-hydrodynamic (MHD) model of air arc plasma in the contact system of a DCCB is developed, based on commercial software FLUENT. Coupled electromagnetic and gas dynamic interactions are considered as usual, and a thin layer of nonlinear electrical resistance elements is used to represent the voltage drop of plasma sheath and the formation of new arc root. The distributions of pressure, temperature, gas ?ow and current density of arc plasma in arc region are calculated. The simulation results indicate that the pressure distribution related to the contact system has a strong effect on the arc commutation process, arising from the change of electrical conductivity in the arc root region. In DCCB contact system, the pressure of arc root region will be concentrated and higher if the space above the moving contact is enclosed, which is not good for arc root commutation. However, when the region is opened, the pressure distribution would be lower and more evenly, which is favorable for the arc root commutation.
  • loading

Catalog

    Turn off MathJax
    Article Contents

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return