696 / 2022-03-31 15:59:06
Dielectric Properties of HFO-1336mzz(E)/N2 Mixture as a Possible SF6-Substitute Gas
Breakdown,Insulation,Enviromental-friendly,HFO-1336mzz(E)
终稿
Nian Tang / Electirc Power Research Insitute of Guangdong Power Grid Co. Ltd.
Kai Wang / Xi’an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Yuyang Yao / Xi’an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Boya Zhang / Xi’an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Xingwen Li / Xi'an Jiaotong University;State Key Laboratory of Electrical Insulation and Power Equipment
Sulfur hexafluoride (SF6) gas is widely used in electric power equipment because of its good insulation and arc extinguishing properties. However, SF6 is a strong greenhouse gas. Therefore, it is very necessary and urgent to search for environmentally-friendly alternatives to SF6. In recent years, various new environmental-friendly gases and the mixed gases has gained attention as potential alternative SF6 gases. Particularly, this paper puts forward the HFO-1336mzz(E) gas as an insulating medium for application in electric power equipment. First, in view of the problem of easy liquefaction of such gas, combined with experimentally measured saturated vapor pressure data, the Antoine equation and the gas-liquid equilibrium law are used to analyse the saturated vapor pressure characteristics of HFO-1336mzz(E)/N2 mixed gas. Secondly, gap breakdown experiments under dc voltage are carried out under different pressures to evaluate the insulation performance of HFO-1336mzz(E)/N2 mixed gas. The experimental results show that the breakdown voltage increases almost linearly with the increase of gas pressure. The research results provide a theoretical basis and technical guidance for its application in power equipment.

 
重要日期
  • 会议日期

    09月25日

    2022

    09月29日

    2022

  • 08月15日 2022

    提前注册日期

  • 09月10日 2022

    报告提交截止日期

  • 11月10日 2022

    注册截止日期

  • 11月30日 2022

    初稿截稿日期

  • 11月30日 2022

    终稿截稿日期

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IEEE DEIS
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Chongqing University
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