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Potential distribution analysis of Y-type insulators in UHV 1000kV double circuit transmission lines

机译:1000kV 1000kV特高压输电线路Y型绝缘子的电位分布分析。

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As extremely important insulation support, insulators play a significant role in the transmission lines construction project. That the type of insulators varies with the environment condition can control the corridor width effectively. For now insulators of the II-type and the V-type are common used in the in-service transmission lines. By using the Y-type insulator, the corridor width of transmission line is consistent with that using the V-type insulator, and by choosing a reasonable proportion of the II-type string and the V-type string, the dimensions of the tower can be reduced, which provides both safety performance and better economic efficiency. Utilizing the finite element method, this article researched the potential and electric field distribution of the Y-type insulators string in UHV 1000kV AC double circuit transmission line, and compared to that of the II-type insulator and the V-type insulator. The voltage value and percentage of the II-type string and the V-type string of the Y-type insulators of varying length were calculated afterwards. According to the calculated result and experimental verification, a reasonable selection to balance the economic efficiency and operation reliability has been made. The results enjoy very important practical engineering significance for construction of UHV transmission lines and improving reliability of UHV AC transmission lines.
机译:作为极其重要的绝缘支撑,绝缘子在输电线路建设项目中发挥着重要作用。绝缘子的类型随环境条件的变化而变化,可以有效地控制走廊的宽度。目前,II型和V型绝缘子是在使用中的传输线中常用的绝缘子。通过使用Y型绝缘子,传输线的走道宽度与使用V型绝缘子的走道宽度一致,并且通过选择合理比例的II型柱和V型柱,塔的尺寸可以被减少,这既提供了安全性能又有更好的经济效益。本文利用有限元方法研究了特高压1000kV交流双回路输电线路中Y型绝缘子串的电位和电场分布,并与II型和V型绝缘子进行了比较。然后计算出不同长度的Y型绝缘子的II型串和V型串的电压值和百分比。根据计算结果和实验验证,合理选择了经济效益和运行可靠性之间的平衡点。该结果对于特高压输电线路的建设和提高特高压交流输电线路的可靠性具有非常重要的实际工程意义。

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