Study on the external insulation performance of ±800 kV DC transmission lines at high altitudes

H. Rao, Licheng Li, Ruihai Li, Guoli Wang, Y. Liao, Fuzeng Zhang
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引用次数: 2

Abstract

High altitudes and heavy pollution are special technical problems faced by UHV DC transmission line in China. Much research work of external insulation performance for ±800 kV DC Transmission Lines were carried out at National Engineering Laboratory for Ultra High Voltage (UHV) Engineering Technology (Kunming). For composite insulators, the shed design parameters have great influence on the flashover voltages. It was found that, with the same insulation distance, the flashover voltage had optimized values at a particular value of the radial extent of the shed and of the between-repeat distance. And the suspension patterns also play an important role in the flashover performance for composite insulators. The flashover voltage of the full scale post insulator decreased with the increasing of the SDD. The switching impulse strength of air gap clearance at a full scale conductor-to-tower model of Yunnan-Guangdong ± 800 kV UHVDC project is also studied.
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高海拔±800kv直流输电线路外绝缘性能研究
高海拔和重污染是中国特高压直流输电线路面临的特殊技术问题。特高压工程技术国家工程实验室(昆明)开展了±800 kV直流输电线路外绝缘性能的大量研究工作。对于复合绝缘子,棚型设计参数对闪络电压影响较大。结果表明,在绝缘距离相同的情况下,闪络电压在棚子径向范围和重复间距的特定值处有最优值。悬浮模式对复合绝缘子的闪络性能也有重要影响。满量程柱式绝缘子的闪络电压随SDD的增大而减小。研究了滇粤±800 kV特高压直流工程全尺寸导体-塔模型中气隙间隙的开关冲击强度。
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