Investigation of leakage current and electric field of polymeric insulator with ring-shaped contamination under ice conditions

被引:0
作者
Zahra Ghiasi
Faramarz Faghihi
Amir Abbas Shayegani-Akmal
机构
[1] Islamic Azad University,Department of Electrical Engineering
[2] Science and Research Branch,High Voltage Laboratory
[3] University of Tehran,undefined
来源
Electrical Engineering | 2022年 / 104卷
关键词
Electric filed distribution; Leakage current; Polymeric insulator; Ice conditions; Ring-shaped contamination;
D O I
暂无
中图分类号
学科分类号
摘要
Different environmental conditions such as pollution, rain, and frost affect the performance of polymeric insulators. In cold climates, insulators may become frozen, resulting in non-uniform distribution of potential and electric field around the insulator. Non-uniform distribution of potential and electric field along the insulator in turn cause problems such as erosion and flashover. Also, due to the wind direction in cold regions, the pollution layer accumulates non-uniformity on the insulator surface. This paper investigated the effect of ice layer with different configurations in combination with ring-shaped contamination, which is more common in cold regions, on the insulator surface to obtain the electric field distribution and leakage current of a 20 kV polymeric insulator. For this purpose, software based on finite element method (FEM) was used. Experimental test for evaluating the leakage current analysis of ring-shaped polluted insulator under ice condition was done in a laboratory clean fog chamber. The results of experimental data and the proposed simulated models were compared and validated. The results revealed that parameters such as increasing the freezing layer and its intensity, continuity of the freezing structure and electrical conductivity of the ice layer would enhance the amplitude of the electric field and leakage current, increasing the probability of flashover. Also, in the combination of ring-shaped contamination layer and freezing, the parameters of the ice layer are more influential than the contamination layer on the electrical behavior of the insulator.
引用
收藏
页码:2079 / 2089
页数:10
相关论文
共 69 条
  • [1] Farzaneh M(2003)Insulator icing test methods and procedures a position paper prepared by the IEEE task force on insulator icing test methods IEEE Trans Power Deliv 18 1503-1515
  • [2] Baker T(2014)Evaluation on flashover voltage property of snow accreted insulators for overhead transmission lines, part I - field observations and laboratory tests to evaluate snow accretion properties IEEE Trans Dielectr Electr Insul 21 2549-2558
  • [3] Bernstorf A(2012)On the mechanism of insulator cleaning using dry ice IEEE Trans Dielectr Electr Insul 19 1715-1722
  • [4] Yaji K(2007)Flashover performance of pre-contaminated and ice-covered composite insulators to be used in 1000 kV UHV AC transmission lines IEEE Trans Dielectr Electr Insul 14 1347-1356
  • [5] Homma H(2021)FEM analysis of electric field distribution for polymeric insulator under different configuration of non-uniform pollution Electr Eng 153 343-349
  • [6] Sakata G(2006)Potential and electric field calculation along an ice covered composite insulator with finite element method IEE Proc Gener Transm Distrib 21 1997-2011
  • [7] Zhou W(2014)Insulator flashover under icing conditions IEEE Trans Dielectr Electr Insul 11 870-880
  • [8] Liu M(2004)Electrical performance of ice-covered insulators at high altitudes IEEE Trans Dielectr Electr Insul 24 3549-3558
  • [9] Liu S(2017)Improvement of electric field distribution by integrating composite insulators in a 400 kV AC double circuit line in Algeria IEEE Trans Dielectr Electr Insul 11 2947-2957
  • [10] Peng M(2017)Leakage current analysis of polymeric insulators under uniform and non-uniform pollution conditions IET Gener Transm Distrib 4 97-104