904 / 2022-08-05 19:08:02
Effects of moss on electrical performance of electrical equipment
Moss distribution, Flashover voltage, Electric field strength
终稿
Lei Peng / Guangdong Key Laboratory of Electric Power Equipment Reliability, Electric Power Research Institute of Guangdong Power Grid Co., Ltd.
Fanyun Su / Chongqing University
Junping Lin / Chongqing University
Yingfan Zhang / Chongqing University
Zhengyong Huang / Chongqing University
Qiang Fu / Guangdong Key Laboratory of Electric Power Equipment Reliability, Electric Power Research Institute of Guangdong Power Grid Co., Ltd.
Zhi Li / Guangdong Key Laboratory of Electric Power Equipment Reliability, Electric Power Research Institute of Guangdong Power Grid Co., Ltd.
In this paper, moss distribution on the surface of insulators with and without room temperature vulcanized silicone rubber (RTV) coating was investigated. The flashover voltages of glass insulators, RTV coated glass insulators, mossy glass insulators and mossy RTV coated glass insulators were measured. In addition, the electric field strength is simulated for insulators with moss contamination. The results show that for insulators without RTV coating, the moss was mainly concentrated on the upper surface of the insulator near the pillar, while the moss on the surface of insulators with RTV coating was mainly concentrated near the umbrella skirt of the insulator. The adhesion of moss does not have a particularly significant effect on the dry flashover voltage of insulators. However, under high humidity conditions, the moss absorbs moisture from the air and deposits dirt from the atmosphere, which increases the electrical conductivity of the surface and causes a steep drop in electric field strength at the junction of the coating and the mossy area on the insulator surface. Therefore, the wet flashover voltage and foul flashover voltage of the mossy glass insulator and the RTV coated insulator were lower than those of the sample without moss on the surface. 

 
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

主办单位
IEEE DEIS
承办单位
Chongqing University
移动端
在手机上打开
小程序
打开微信小程序
客服
扫码或点此咨询