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Lightning shielding analysis of EHV and UHV AC transmission lines: the effect of operating voltage and terrain topography

机译:EHV和UHV交流传输线的闪电屏蔽分析:工作电压和地形地形的影响

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The Electrogeometric Method (EGM) is commonly used to analyze and design the external lightning protection of power transmission lines. However, it has been found that the EGM is not able to predict the shielding failure rate observed in EHV and UHV transmission lines. In this article, an analysis of the lightning attachment to EHV and UHV transmission lines is presented, using the Self-consistent Leader Inception and Propagation Model (SLIM). The study is focused on the effect of operating voltage and type of terrain on the estimated lightning attraction distances for overhead transmission lines. It is found that the phase conductors have slightly larger lightning attraction areas during their positive voltage semi cycle and much more over mountainous terrain.
机译:电诊断方法(EGM)通常用于分析和设计电力传输线的外部雷电保护。然而,已经发现,EGM不能预测在EHV和UHV传输线中观察到的屏蔽失败率。在本文中,使用自我一致的领导者初始化和传播模型(SLIM)来提出对EHV和UHV传输线的闪电附件的分析。该研究专注于工作电压和地形类型对截止架空传输线的估计雷电吸引距离的影响。结果发现,相导体在正电压半周期期间具有略大的闪电吸引力区域,并且在山区地形中更远。

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