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Electric Field Distribution Calculation and Analysis of Composite Insulators Operating on Double Circuit Transposition Tower in 500kV Transmission Lines

机译:500kV输电线路双电路换位塔上运行的复合绝缘子的电场分布计算与分析

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Transposition tower is generally used in AC transmission line to change the configuration of conductors and mitigate the imbalance of voltage and current. Due to the special conductor configurations, the composite insulators on transposition tower are more likely to be damaged when compared with those on ordinary transmission tower. In this paper, a full-scale three-dimensional simulation model of double circuit transposition tower used in 500 kV transmission lines was built and the finite element method was used to compute the electric field distribution along composite insulators considering the effects of tower, conductor configurations, grading rings, fittings and phase interaction. The regularity of electric field distribution on the surface of composite insulators was researched and the differences between transposition tower and ordinary transmission tower were presented in simulation results. At last, some suggestions were provided to optimize electric field distribution and extend service life of composite insulators on transposition tower in this paper.
机译:换位塔通常用于交流传输线以改变导体的配置并减轻电压和电流的不平衡。由于特殊的导体配置,与普通传输塔上的那些相比,转子塔上的复合绝缘体更可能被损坏。在本文中,建造了500 kV输电线路中使用的双电路转换塔的全尺寸三维仿真模型,沿着塔,导体配置的效果来计算沿复合绝缘子的电场分布来计算电场分布,分级环,配件和相互作用。研究了复合绝缘体表面上的电场分布的规律性,仿真结果呈现了换位塔与普通传输塔的差异。最后,提供了一些建议,以优化电场分布,并在本文中延长综合绝缘子的使用寿命。

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