Design of Air Clear Distance between Two-Sections Arrester and Valve Tower of ±1100kV UHVDC Converter Valve

Zhao Yingfeng, Z. Xiang, Sun Jian, Zhang Zijing, Fang Taixun, Chen Chihan
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Abstract

The length of arrester is limited by the height of transport and the difficulty of assembly, so the arrester of ±1100kV UHVDC converter valve is designed as a two-sections arrester. The metal in the middle of the arrester cannot be equipotential with the valve tower. It is necessary to study the potential distribution characteristics of arrester metal, then to obtain the voltage difference between the arrester and the valve tower, which provides the basis for the design of air clear distance. According to the single valve withstand voltage requirements and non-uniform voltage coefficient. The air clear distance requirement between the valve tower and the metal at both ends of the arrester is calculated. The potential distribution characteristic of the intermediate metal and the voltage difference characteristic between the intermediate metal and the valve tower under different types of voltages are simulated. The maximum voltage difference and air clear distance requirement between the intermediate metal and the valve tower are calculated. Based on electric field simulation and single valve test, the safety of the design of air clear distance between the arrestor and the valve tower is verified.
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±1100kV特高压直流换流阀两段避雷器与阀塔清风距离设计
由于避雷器长度受运输高度和装配难度的限制,故将±1100kV特高压直流换流阀避雷器设计为两段避雷器。避雷器中间的金属不能与阀塔等电位。有必要研究避雷器金属的电位分布特性,进而得到避雷器与阀塔之间的电压差,为清风距离的设计提供依据。根据单阀耐压要求和不均匀电压系数。计算了阀塔与避雷器两端金属之间的清风距离要求。模拟了不同电压类型下中间金属的电位分布特性以及中间金属与阀塔之间的电压差特性。计算了中间金属与阀塔之间的最大电压差和清风距离要求。通过电场仿真和单阀试验,验证了避雷器与阀塔间清风距离设计的安全性。
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