张金波, 陈为德, 徐翃, 贺敬安, 顾佳莹, 张其林. 雷击高塔对多导体架空配电线感应过电压的影响[J]. 高电压技术, 2021, 47(5): 1805-1813. DOI: 10.13336/j.1003-6520.hve.20200530
引用本文: 张金波, 陈为德, 徐翃, 贺敬安, 顾佳莹, 张其林. 雷击高塔对多导体架空配电线感应过电压的影响[J]. 高电压技术, 2021, 47(5): 1805-1813. DOI: 10.13336/j.1003-6520.hve.20200530
ZHANG Jinbo, CHEN Weide, XU Hong, HE Jing'an, GU Jiaying, ZHANG Qilin. Influence of Lightning Induced Voltages on Overhead Multiconductor Distribution Lines Associated with Lightning Strokes to Tall Tower[J]. High Voltage Engineering, 2021, 47(5): 1805-1813. DOI: 10.13336/j.1003-6520.hve.20200530
Citation: ZHANG Jinbo, CHEN Weide, XU Hong, HE Jing'an, GU Jiaying, ZHANG Qilin. Influence of Lightning Induced Voltages on Overhead Multiconductor Distribution Lines Associated with Lightning Strokes to Tall Tower[J]. High Voltage Engineering, 2021, 47(5): 1805-1813. DOI: 10.13336/j.1003-6520.hve.20200530

雷击高塔对多导体架空配电线感应过电压的影响

Influence of Lightning Induced Voltages on Overhead Multiconductor Distribution Lines Associated with Lightning Strokes to Tall Tower

  • 摘要: 为了研究雷击高塔时多导体架空配电线路感应过电压特征,基于高塔传输线模型建立了2维时域有限差分算法,计算雷击高塔时产生的空间电磁场,并结合Agrawal耦合模型计算了2种典型结构(水平和垂直结构)多导体架空配电线上的感应过电压。算法精度通过与相关文献结果的对比得以验证,利用该算法对比分析了雷击地面和雷击高塔时的感应过电压,并讨论了水平距离、塔高、电导率和屏蔽线等因素的影响。结果表明:与雷击平坦地面相比,雷击高塔时2种结构的线路感应过电压波形产生了明显振荡,幅值也显著变大;对于2种结构的线路感应过电压,其幅值均随着距回击通道水平距离的增加而减小、随土壤电导率的减小而增大;当塔高小于水平距离时,线路过电压幅值与塔高成正相关关系。另外,屏蔽线的存在会明显降低线路端点的感应过电压幅值,水平多导体架空线中间位置的线路、垂直多导体架空线最靠近屏蔽线的线路受屏蔽作用最明显。该研究结论可为改进架空线路的防雷设计提供理论参考。

     

    Abstract: In order to study the characteristics of induced voltages on overhead multiconductor distribution lines due to lightning strike to a tall tower, a two-dimensional finite-difference time-domain (2-D FDTD) algorithm model was proposed to calculate the lightning-generated electromagnetic fields based on the tower transmission line model, the lightning induced voltages on multiconductor distribution lines(horizontal and vertical configurations) were computed by means of the Agrawal coupling model, and the accuracy of the algorithm was verified by comparing with the relevant research results abroad. Moreover, the influence of lightning strike to a tall tower or idea flat ground was compared, and the effects of the distance, tower height, soil conductivity as well as well as the shielding wires were evaluated. The results show that the induced voltages produce obvious waveform oscillation and the amplitude increase significantly when lightning strikes a tower compared with flat ground. For the horizontal and vertical configurations, the peak voltages decrease with increasing distance from the lightning channel and increase with the decrease of the soil conductivity. When the tower height is less than the horizontal distance, the peak voltages are positively correlated with the tower height. In addition, the shielding wires can significantly reduce the induced voltages of the line endpoints, and the middle line and the line closest to the shielding wires of the horizontal and vertical configurations are most shielded, respectively. The research conclusions can provide references for lightning protection design of overhead lines.

     

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