648 / 2017-05-15 23:54:15
Numerical Calculation and Experimental Study on the Insulation Characteristics of SF6-N2 and SF6-CF4 Gas Mixtures
Gas discharge,SF6-N2 and SF6-CF4,fluid model,insulating strength,synergistic effect
终稿
Xin Lin / Shenyang University of Technology
Jia Zhang / Shenyang University of Technology
Xin Li / Shenyang University of Technology
Jian XU / Shenyang University of Technology
Zhen Gen / Shenyang University of Technology
Lu Li / Shenyang University of Technology
Hui Chen / Shenyang University of Technology
This paper presents a numerical model for simulating the breakdown performance of SF6-N2 and SF6-CF4 mixtures gas. Firstly, the ionization and attachment coefficients of mixtures were obtained by solving Boltzmann equation at different mixing ratio and 300K. All these parameters were applied on the fluid model to investigate the mechanism of electron number density varies along with time and space by finite element method-flux corrected transport (FEM-FCT) way. The breakdown voltages were obtained by cyclic iteration to solve the gas discharge process at different voltages, and the synergistic effects were finally studied. The results show that the plasma conduction channel was formed when the discharge gap had been completely broken down, and its peak value could reach 1017 level. The calculation and experimental results show that the breakdown voltage of SF6-N2 and SF6-CF4 mixtures gas increase linearly with pressure. But the insulating strength of SF6-N2 is stronger than that of SF6-CF4 mixture in uniform electric field. Under the same pressure, the synergistic coefficients of SF6-N2 and SF6-CF4 gas mixtures, which contain 20%SF6 gas, are the smallest, but the synergistic effect of SF6-N2 mixture is stronger than that of SF6–CF4 mixture. This model simulation results of the breakdown voltages and synergistic coefficients show good agreement with measurements.
重要日期
  • 会议日期

    10月22日

    2017

    10月25日

    2017

  • 01月04日 2017

    摘要录用通知日期

  • 03月10日 2017

    初稿录用通知日期

  • 06月30日 2017

    终稿截稿日期

  • 10月25日 2017

    注册截止日期

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