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Voltage sharing characteristics of V-type suspension ceramic insulator strings for UHV AC substation

机译:特高压交流变电站V型悬式陶瓷绝缘子串的分压特性

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Owing to the high voltage level, complex tower and insulator string structures, short phase distance and various arrangement forms of insulator string, the potential and electric field distribution of the insulator strings in 1000kV substation are more severe than that in transmission lines, and the voltage sharing characteristics of the insulator strings need to be researched deeply. With three dimensional finite element method, considering the influence of the tower, conductors, fittings and the interaction of three phases, this paper calculate the potential and electric field distribution of the V-type suspension ceramic insulator strings in 1000kV substation. The influence of grading ring, suspension status and mounting type to the potential distribution of insulator string is researched, the parameters of the grading ring including the diameter of grading ring, the mounting height of grading ring, and the tube diameter of grading ring are optimized, finally, the proper configuration of the grading ring applied to V-type suspension ceramic insulator strings in 1000kV substation was suggested. The research achievements by this paper have been successfully applied on the ultra high voltage (UHV) AC pilot project in China with great practical value to raise the reliability of the insulators and improve the electromagnetic environment in the 1000kV substations.
机译:由于高电压水平,复杂的塔架和绝缘子串结构,较短的相距和各种绝缘子串布置形式,1000kV变电站中绝缘子串的电位和电场分布比输电线路更严重,电压也更高。绝缘子串的共有特性需要深入研究。利用三维有限元方法,考虑塔架,导体,配件和三相的相互作用,计算了1000kV变电站V型悬式陶瓷绝缘子串的电位和电场分布。研究了分级环,悬吊状态和安装类型对绝缘子串电位分布的影响,优化了分级环的参数,包括分级环的直径,分级环的安装高度,分级环的管径。最后,提出了适用于1000kV变电站V型悬挂陶瓷绝缘子串的分级环的正确配置。本文的研究成果已成功应用于中国特高压交流试验项目,对提高1000kV变电站绝缘子的可靠性,改善电磁环境具有重要的实用价值。

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