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Lightning back-flash performance of 220kV AC quadruple-circuit transmission lines on the same tower

机译:同一塔架上的220kV交流四回路输电线路的雷电反击性能

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In this paper, an insulation flashover criterion model, in which the change of multi-conductor system coupling coefficient induced by impulsive corona is considered, is constructed by the electromagnetic transient analysis software ATP-EMTP. The model proposed, having taken the effect of the impulsive corona into account, is able to present the influence of conductor corona characteristics on potential difference of two ends of the insulator when an impulse flashover on insulator string occurs. A model of 220kV multi-circuit transmission line, which adopts insulation tower model with multi-wave impedance, is constructed as well. Thereby, it is feasible to study lightning back-flash proof levels (LBPL) and its influencing factors. The simulation result shows that the tower height plays a predominant role in deciding the performance of the counterattack lightning level of transmission lines. Moreover, the back-flash level of quadruple-circuit lines is remarkably lower than that of double and single circuit lines. It is suggested that, firstly the tower should be much lower if it is permitted; secondly the conductors at different heights in tower should adopt different insulation levels.
机译:本文利用电磁暂态分析软件ATP-EMTP建立了考虑闪变电晕引起的多导体系统耦合系数变化的绝缘闪络判据模型。所提出的模型考虑了脉冲电晕的影响,能够在绝缘子串上发生脉冲飞弧时,呈现导体电晕特性对绝缘子两端电位差的影响。并建立了采用多波阻抗绝缘塔模型的220kV多回路输电线路模型。因此,研究雷电反闪光等级(LBPL)及其影响因素是可行的。仿真结果表明,塔高是决定输电线路反击雷电性能的主要因素。此外,四回路线的回闪水平显着低于双回路线和单回路线的回闪水平。建议:首先,如果允许的话,塔应该低很多;其次,塔内不同高度的导体应采用不同的绝缘等级。

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