考虑避雷器对降低雷击电压的影响:接地建模的重点

Ícaro Augusto Nobre, J. Colqui, D. Mestriner, R. Procopio, M. Brignone, Rodolfo A. R. Moura, M. Schroeder, U. C. Resende, J. Filho
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引用次数: 0

摘要

雷电现象是影响架空配电系统的最危险因素之一。因此,采取保护措施减少雷电损害是保证配电线路可靠性的重要问题。最广泛采用的防雷措施是:屏蔽线、避雷器和增加线路绝缘等级,通常是通过增加绝缘子串的长度。在上述技术中,一个值得特别注意的是安装避雷器,因为它可以非常有效,通常用于减少雷电过电压。通过这种方式,本文对安装避雷器和不安装避雷器的配电线路中间接雷击引起的绝缘子串感应过电压计算进行了对比研究,并考虑了简单而严格的极基接地系统建模。此外,通常采用的将安装避雷器的极脚接地系统模型的简化表示可能会导致过电压的低估。结果表明,避雷器可以隔离相邻极中感应电压的传播,方法是将避雷器放置在交替模式的极上。在研究的案例中,考虑严格模型而非简化模型时,最大电压差约为6.42%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Considering Surger Arresters to Reduce Lightning Induced Voltage: emphasis on the Grounding Modeling
Lightning-related phenomena are one of the most dangerous factors affecting the overhead distribution systems. Said that, protective measures to reduce lightning damages are an important issue to guarantee distribution line reliability. The most widely employed protective measures against lightning are: shield wires, surge arresters, and increasing the line insulation level, usually by increasing the length of insulator strings. Among the aforementioned techniques, one that deserves a special attention is installing lightning arresters, since it can be very effective and commonly used in reducing lightning overvoltage. In this way, this paper presents a comparative study of the induced overvoltage calculation along insulator strings due to indirect lightning strikes in the distribution lines with and without the installation of surger arresters and comparing results considering a simple and rigorous modeling of the pole-footing grounding system. Furthermore, a simplified representation of the model of the pole-footing grounding system, in which the surge arresters will be installed, commonly adopted may lead to an underestimation of the overvoltage. The results point that the surge arresters are able to isolate the propagation of the induced voltages in adjacent poles by positioning them at poles in alternate pattern. The maximum voltage difference found when considering the rigorous model instead of the simplified model of the pole-footing grounding system, for the cases studied, was around 6.42%.
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