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Air-Gap Discharge Characteristics in Foggy Conditions Relevant to Lightning Shielding of Transmission Lines

机译:与传输线的雷电屏蔽有关的有雾条件下的气隙放电特性

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The features of lightning shielding of transmission lines have been calculated using the electrogeometric model (EGM) proposed by Armstrong and Whitehead. Discrepancies, however, have been found in the case of ultra-high voltage (UHV)-designed transmission lines. UHV-designed transmission lines often pass through high-altitude mountain areas, where foggy or rainy conditions are common when there is lightning. While the electrogeometric model determines the striking distance based on the lightning stroke current, environmental conditions, and how they might affect lightning discharge paths, they are not considered. It is possible, therefore, that foggy conditions may cause differences in the performance of transmission-line lightning shielding. This study used scale models of transmission lines for discharge tests with a 1-m air gap and analyzed differences in discharge paths and locations in dry and foggy conditions. The results showed that the polarity of the discharge had a significant influence, but differences in dry and foggy tests were negligible.
机译:传输线的防雷功能已使用Armstrong和Whitehead提出的电几何模型(EGM)进行了计算。但是,在超高压(UHV)设计的传输线中发现了差异。特高压设计的传输线通常会穿过高海拔山区,在有雷电的地方,多雾或多雨的情况比较普遍。虽然电几何模型是根据雷击电流,环境条件以及它们如何影响雷电放电路径来确定击中距离的,但并未考虑它们。因此,有雾的条件可能会导致传输线雷电屏蔽性能的差异。本研究使用传输线的比例模型进行气隙为1 m的放电测试,并分析了在干燥和有雾条件下放电路径和位置的差异。结果表明,放电的极性有很大的影响,但干雾试验中的差异可忽略不计。

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