工厂复合悬盘绝缘子的陡波特性及建议

Wu Wenhua, Zhang Rui, W. Yuqing, Cai Yong, Zhang Hu, Wu Guangya
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摘要

盘状悬浮绝缘子表面涂覆RTV涂层是一种极为有效的防污闪络措施,广泛应用于国家电网公司各电压等级线路,特别是特高压直流工程。有效地解决了我国输电线路大面积污染闪络的问题,同时也提出了新的问题。现有经验表明,RTV防污闪络涂层会在一定程度上影响盘悬瓷或玻璃绝缘子的陡波性能。目前对于RTV涂层对绝缘子的影响程度,以及作为新产品的工厂化复合绝缘子的陡波特性的研究较少。本文以国家电网公司特高压工程中不同吨位的盘瓷和玻璃绝缘子为研究对象,分别在国家电网公司重点实验室进行了空气冲击击穿耐压试验,同时通过ANSYS仿真软件对样品进行了建模和场强分布分析。试验结果表明,当机械强度不大于210 kN时,陡冲击幅值减小到2.4 p.u.,当机械强度不小于300 kN时,陡冲击幅值减小到2.2 p.u.。对于工厂生产的复合盘状悬浮绝缘子,建议根据产品的不同机械强度等级,制定相应的陡波冲击电压幅值准则。
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Steep Wave Characteristics and Suggestions of Factory composite Disc Suspension Insulators
RTV coating on the surface of the disc suspension insulators is an extremely effective anti-pollution flashover measure, which is widely used in all lines with different voltage levels of State Grid Corp., especially the UHVDC project. It effectively solves the problem of large-scale pollution flashover on transmission lines in our country, whereas raises new problems. The existing experience shows that the RTV anti-pollution flashover coating will affect the steep wave performance of the disc suspension porcelain or glass insulators to a certain extent. At present, there is less research on the extent of the RTV coating impact to insulators, as well as the steep wave characteristics of factory compound insulators as new products. This paper studied different tonnage products of disc porcelain and glass insulators for UHV proj ect of State Grid Corp., conducted the air impact breakdown withstand voltage tests respectively in the Key Laboratory of State Grid Corp. At the same time, the samples were modeled and analyzed the field intensity distribution through ANSYS simulation software. The test results show that the steep shock amplitude decreases to 2.4 p.u. for products with a mechanical strength of not more than 210 kN, and the amplitude decreases to 2.2 p.u. for that of not less than 300 kN. For the factory composite disc suspension insulators, it is suggested that corresponding steep wave impulse voltage amplitude criteria should be given according to different mechanical strength levels of the products.
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