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Simulation Test Study on Influence of Grounding Resistance on Lightning Capability of Triggering Lightning Tower

机译:接地电阻对触发雷电塔防雷能力影响的仿真试验研究

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The Triggering Lightning Tower is erected along the corridor of the transmission line. There are great differences in soil resistivity between different geographical locations, which leads to different grounding resistances of the Triggering Lightning Tower and further affects the lightning performance. In order to study the relationship between the triggered lighting ability of the triggering lightning tower with grounding resistance, the 1:12.5 scale model tower is designed in this paper, numerous discharge experiments with standard switching impulse has been conducted on the testing triggering lightning tower model scaled in the ratio of 1:12.5 respectively, the discharge process was observed. The results represent that: under a gap condition of 1m in length, a negative correlation between the grounding resistance and the triggered lighting ability: the correlation is higher when the grounding resistance is lower. The experimental results lead to the conclusion that the lightning protection measures would be influenced by the grounding performance of triggering lighting tower, and it was proved qualitatively that the ability of triggered lighting would be better with the grounding resistance decreased. The conclusions drawn from test results have provided reference for experimental study of grounding and site selection of triggering lightning tower.
机译:触发闪电塔沿着传输线的走廊竖立。不同地理位置之间的土壤电阻率差异很大,这会导致触发式雷电塔的接地电阻不同,进而影响雷电性能。为了研究触发雷电塔的触发照明能力与接地电阻之间的关系,设计了1:12.5比例模型塔,对触发雷电塔模型进行了多次带有标准开关脉冲的放电实验。分别以1:12.5的比例缩放,观察到放电过程。结果表明:在长度为1m的间隙条件下,接地电阻与触发照明能力之间呈负相关:接地电阻越低,相关性越高。实验结果表明,防雷措施受触发式照明塔的接地性能的影响,定性地证明,随着接地电阻的降低,触发式照明的能力会更好。试验结果得出的结论为触发雷电塔接地及选址的实验研究提供了参考。

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