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Lightning Interaction with 132 kV Transmission Line Protected by Surge Arresters

机译:闪电互动与浪涌避雷器保护的132千伏输电线路

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In the previous paper (D. Caulker, H. Ahmad, Z. Abdul-Malek, Shielding failure analysis of 132 kV transmission line shielded by surge arresters associated with multiple lightning strokes), the voltage induced onto a 132 kV double-circuit overhead transmission line tower associated with multiple lightning strokes terminating on the tower was found to be considerable in contrast to single lightning strokes relating to backflash and shielding failure. This paper develops the preceding work in three different areas. At first, considers the induced voltages on the tower due to MSL strikes on all three phase conductors on the left-circuit of the tower during shielding failure. Middle phase arms of all three phases produced the most severe voltages. Secondly, line surge arresters are installed on all towers after performing the preceding investigations when no line surge arresters were installed on the towers. This allows the possibility of determining appropriate arrester configurations for reduction of line outages. Lightning surge arresters are shown to be an important consideration in determining the lightning performance of the line in preventing line failures.
机译:在上一篇文章中(D. Caulker,H. Ahmad,Z. Abdul-Malyk,屏蔽失效分析132 kV传输线的浪涌避雷器与多次雷电冲程相关的浪涌避雷器),电压诱导到132 kV双电路架空传输上与多个闪电冲程相关联的线塔被发现与与反闪管和屏蔽失败有关的单次闪电冲程相比,相反。本文在三个不同的地区开发了前面的工作。首先,在屏蔽失败期间,由于MSL在塔架的左路的所有三相导体上撞击塔架上的感应电压。所有三个阶段的中相臂产生了最严重的电压。其次,在塔楼上没有线路浪涌避雷器时,在进行前述调查后,在所有塔上安装了线路浪涌避雷器。这允许确定适当的避雷器配置以减少线路中断。避雷浪涌避雷器被证明是在确定防止线路故障中的线路的闪电性能方面是一个重要的考虑因素。

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