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Modelling of the inhibition effect of thin-wire ultra-corona on upward leader and its application on lightning protection in high-voltage transmission lines

机译:细线超电晕对上行导线的抑制作用建模及其在高压输电线路防雷中的应用

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摘要

Under the induction of thundercloud charges or lightning leader, ultra-corona occurs on the surface of thin wire-clad conductors, which could not only inhibit the formation of streamers to prevent the development of upward leaders but also change the potential distribution in the surrounding space. Taking advantage of these characteristics, the upward leader from a power conductor can be suppressed by wrapping thin wires around ground wires. The inhibition mechanism of ultracorona on the upward leader has been analysed and its characteristics and development laws have been studied by constructing ultra-corona model under thundercloud conditions. A model for studying the inhibition effect of ultra-corona on the upward leader by combining the ultra-corona model and leader progression model is presented, and a detailed overall analysis of its influence on lightning protection performance on a 500 kV transmission line is conducted. According to the simulation results, the shielding failure width reduces with the thin wire-clad ground wires, and the attraction of the upward leader from power conductor on lightning leader is weakened. Therefore, the probability of lightning strikes is reduced, and lightning protection of lines is improved. Finally, two influential factors on the thin wire-applied transmission lines are discussed.
机译:在雷云电荷或雷电引导的感应下,超电晕发生在细金属丝包覆的导体表面上,这不仅可以抑制彩带的形成,防止向上引导的发展,而且可以改变周围空间的电势分布。利用这些特性,可以通过将细线绕在接地线上来抑制从电源线向上引出。通过建立雷云条件下的超电晕模型,分析了超电晕对上行先导的抑制机理,研究了其特征和发展规律。提出了一种结合超电晕模型和前导级进阶模型研究超电晕对上行先导的抑制作用的模型,并详细分析了其对500 kV输电线路防雷性能的影响。根据仿真结果,屏蔽故障宽度随着细包线接地线的减小而减小,并且从电源导体引出的向上引线对避雷针的吸引力减弱。因此,减少了雷击的可能性,并且提高了线路的防雷保护。最后,讨论了应用细导线的传输线上的两个影响因素。

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