Influence of the Electromagnetic Pulse on the Overvoltages Due to Direct Lightning to Lines over Soils with Different Ground Conductivity

K. Ishimoto, F. Tossani, F. Napolitano, A. Borghetti, C. Nucci
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引用次数: 2

Abstract

In medium-voltage distribution lines, lightning outages associated with indirect strokes are less frequent if these lines are equipped with a grounded shield wire and surge arresters are installed at close intervals. Thus, for this case, the lightning performance is mainly associated with the line response due to direct events. Recent analysis concerning medium voltage line equipped with a shield wire shows that the electromagnetic pulse radiated from the channel may enhance the overvoltage across insulators during direct strikes. This paper extends the analysis to lines over lossy soils, assuming different values of ground conductivity. The results indicate that the effect of the electromagnetic pulse needs indeed to be considered for an accurate lightning performance assessment of distribution lines with shield wire. On the one hand, the voltages across insulators increase as the soil conductivity decreases; on the other hand, it is shown that for direct strikes the difference between the voltage amplitudes calculated considering or not the LEMP contribution increases with the ground conductivity. Thus, appropriate modelling and relevant calculation tools availability is fundamental for the problem of interest.
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电磁脉冲对不同接地电导率土壤上线路直击过电压的影响
在中压配电线路中,如果这些线路配备接地屏蔽线,并且间隔较近地安装避雷器,则与间接雷击有关的雷击中断的频率就会降低。因此,在这种情况下,雷电性能主要与直接事件引起的线路响应有关。最近对带有屏蔽线的中压线路的分析表明,通道辐射的电磁脉冲在直接撞击绝缘子时可能会增强绝缘子上的过电压。本文将分析扩展到含湿土壤上的线路,假设不同的地面电导率值。结果表明,要对带屏蔽线的配电线路进行准确的防雷性能评估,确实需要考虑电磁脉冲的影响。一方面,绝缘子上的电压随着土壤电导率的降低而增加;另一方面,对于直接冲击,考虑或不考虑LEMP贡献计算的电压幅值之差随着地电导率的增大而增大。因此,适当的建模和相关的计算工具的可用性对于感兴趣的问题是至关重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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