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Computation and analysis of the electric field distribution and voltage-sharing characteristics for 1000 kV composite tower

机译:1000 kV复合塔电场分布和均压特性的计算与分析。

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Composite towers have advantages in saving line corridors, light weight, easy transportation, and good electrical insulation properties attracting increasing attention from researchers. The 1000 kV composite tower adopts partial insulation design, and part of the tower will be replaced with composite material. Due to its high voltage level and complex structure, potential and electric field sharing problems are serious, further research is highly necessary. In this paper, applying three dimension finite element method, the voltage and electric distribution of 1000 kV composite tower has been calculated; the potential distribution of 1000 kV composite tower is compared with 1000 kV line tower. The results show that the potential distribution of 1000 kV composite tower is superior to the potential distribution of 1000 kV line tower. The initial design of the 1000 kV composite tower can't meet the critical requirements for the electric field strength. After optimization, the maximum electric field strength on key location of composite tower is below control value. The research achievements provide basis for the application of new composite tower, and ensuring the safety and reliability of UHV transmission lines.
机译:复合塔具有节省线路走廊,重量轻,易于运输以及良好的电绝缘性能等优点,吸引了越来越多的研究人员的注意。 1000 kV复合塔采用部分绝缘设计,部分塔将被复合材料替代。由于其高电压水平和复杂的结构,势能和电场共享问题很严重,因此有必要进行进一步的研究。本文采用三维有限元方法,计算了1000 kV复合塔的电压和电分布。将1000 kV复合塔与1000 kV线路塔的电势分布进行了比较。结果表明,1000 kV复合塔的电势分布优于1000 kV线路塔的电势分布。 1000 kV复合塔的初始设计不能满足对电场强度的严格要求。优化后,复合塔关键部位的最大电场强度在控制值以下。研究成果为新型复合塔的应用,确保特高压输电线路的安全性和可靠性提供了依据。

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