Study on Pollution Classification and External Insulation Configuration of 1000kV Sichuan-Chongqing UHV AC Transmission Line

Liang Tian, R. Huang, Chi Wu, Qianbo Xian
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Abstract

The insulators in operation are exposed to the air. Under the conditions of humid air (such as fog and drizzle), when they are seriously polluted, and the external insulation configuration is insufficient, the insulators will have pollution flashover, leading to a power failure of the line. UHV transmission lines feature large energy transmission and long distance. Once pollution flashover accident occurs, it will seriously threaten the stability of the power supply system [1]. Therefore, it is of great significance to determine the design of external insulation configuration of ultra high voltage project scientifically and economically. In this paper, the climatic environment, pollution source distribution and operating experience of nearby projects along the Sichuan-Chongqing transmission line are studied and analyzed. The AC pollution level is proposed. Through the research and analysis of insulator pollution test data of transmission lines along the Sichuan-Chongqing line, the key pollution accumulation characteristics of insulators in different environmental areas along the project, namely, the pollution ratio of top and bottom surface areas, are determined. The pollution flashover tests under different pollution conditions of top and bottom surface areas were carried out, and related pollution coefficients were obtained. According to the results of artificial pollution flashover voltage test of insulators, combined with the equivalent salt deposit density characteristics in Sichuan and Chongqing, the external insulation configuration under typical pollution conditions along the Sichuan-Chongqing UHV line was recommended.
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1000kV川渝特高压交流输电线路污染分级及外绝缘配置研究
工作中的绝缘子暴露在空气中。在潮湿空气(如大雾、毛毛雨)的条件下,当它们受到严重污染时,外部绝缘配置不充分,绝缘子就会产生污染闪络,导致线路停电。特高压输电线路具有能量传输大、距离远的特点。污染闪络事故一旦发生,将严重威胁供电系统的稳定运行。因此,科学、经济地确定特高压工程外绝缘配置设计具有重要意义。本文对川渝输电沿线的气候环境、污染源分布及周边工程的运行经验进行了研究和分析。提出了空调污染等级。通过对川渝线沿线输电线路绝缘子污染试验数据的研究分析,确定了工程沿线不同环境区域绝缘子的关键污染积累特征,即上、下表面污染比。进行了不同污染条件下的顶、底表面污闪试验,得到了污闪系数。根据绝缘子人工污染闪络电压试验结果,结合川渝地区等效盐矿密度特征,推荐川渝特高压线路典型污染工况下的外绝缘配置。
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