高海拔地区交流特高压线路绝缘配置研究OA
Research on Insulation Configuration of AC UHV Transmission Lines in High Altitude Areas
通过调查国内已建交流特高压线路工程复合绝缘子和盘形绝缘子的应用现状,分析低海拔地区绝缘子串的配置原则及适用范围.依托在建川渝交流特高压工程的研究成果和实践经验,认为高海拔地区复合绝缘子结构高度由操作过电压间隙控制,通过成串后干弧距离与塔头进行绝缘配合的方法,并结合中国电科院污秽外绝缘试验结果,得到高海拔地区复合绝缘子推荐结构高度及最小爬电距离.分析现有标准规范中盘形绝缘子片数及污耐受电压的海拔修正公式,现有标准GB 50665-2011中的修正方法并未进行海拔迭代,绝缘子片数修正系数为固定值,DL/T 368-2010中的修正方法得到的绝缘子片数修正系数随气压影响特征指数和海拔的升高而增加,在建交流特高压工程的最新科研成果表明,三伞型绝缘子片数修正系数与海拔高度正相关,钟罩型绝缘子片数修正系数在2 000 m~3 000 m海拔有异常突增,相同海拔下c级污秽程度较d级的修正系数更高,钟罩型较三伞型的修正系数更高.
Investigation on the application status of composite insulators and disc insulators in existing ac uhv line projects in China,and analyzing the configuration principles and applicable scope of insulator strings in low altitude regions.Relying on the research results and practical experience of the Sichuan Chongqing AC UHV Project under construction,it is believed that the structural height of composite insulators in high altitude areas is controlled by the switching overvoltage gap,and the insulation coordination method is to match the tower head with the dry arcing distance after stringing.Based on the results of the pollution outer insulation test conducted by CEPRI,the recommended structural height and minimum creepage distance of composite insulators in high-altitude areas are obtained.Analyzing the altitude correction formula for the number of insulator pieces and pollution withstand voltage in existing standard specifications,the results show that the correction method in GB 50665-2011 has not undergone altitude iteration,and the correction coefficient for the number of insulator pieces is a fixed value.The correction coefficient for the number of insulator pieces obtained by the correction method in DL/T 368-2010 increases with the increase of the characteristic index of air pressure influence and altitude.Recent scientific research findings from ongoing AC UHV projects indicate that the correction coefficient for the number of three-umbrella insulator units is positively correlated with altitude,whereas for bell-type insulators it exhibits an abnormal sharp increase at altitudes of 2 000 m~3 000 m.At the same altitude,the correction coefficient is higher for class c pollution severity than for class d,and higher for bell-type insulators than for three-umbrella insulators.
马江波;谭浩文;米凯;周文武;李小亭;王子悦
中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075中国电力工程顾问集团西北电力设计院有限公司,陕西 西安 710075
信息技术与安全科学
交流特高压高海拔修正绝缘配置污耐压
AC UHVhigh altitude correctioninsulation configurationpollution withstand voltage
《电力勘测设计》 2026 (5)
19-24,56,7
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