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Tower-Footing Resistance and Lightning Trip-outs of 150 kV Transmission Lines in West Sumatra in Indonesia

机译:印度尼西亚西苏门答腊岛150 kV输电线路的铁塔支撑电阻和雷电跳闸

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The trip-out rates calculated by taking account of the reduction in the tower-footing resistance due to the ionizing effect agree well with the observed ones. This indicates the importance of the impulse resistance in the analysis of the lightning performance of the line. The trip-out rate at the lower arm is high for the cases of the average grounding resistance of 33.3 ohms, and the rates at the upper arm are high for the cases of the average grounding resistance of 5.6 ohms. Such à trend can be simulated by the IEEE method using the impulse resistance. The trend for the trip-out ratio to become high with the increase in the span length is significant after improvement of the tower-footing resistance. However, the trend is weak before improvement of the tower-footing resistance. This is because in the case of the high tower-footing resistance the flashover occurs before the arrival of the wave reflected from the adjacent towers due to the high potential rise of the tower. Therefore, the degree of the influence of the span length on the trip-out ratio is dependent on the tower-footing resistance. The local lightning activity significantly affects the trip-out rate.
机译:考虑到由于电离效应而引起的塔底阻力的减小而计算出的跳闸率与所观察到的非常吻合。这表明抗冲击性在分析线路的雷电性能中的重要性。对于平均接地电阻为33.3欧姆的情况,下臂的跳闸率较高,而对于平均接地电阻为5.6欧姆的情况,上臂的跳闸率较高。可以通过IEEE方法使用抗冲击性来模拟这种趋势。随着跨度的增加,跳闸比变高的趋势在提高塔底抗力后很明显。但是,在提高塔底阻力之前,趋势很弱。这是因为,在高塔底阻力的情况下,由于塔的高电势上升,在从相邻塔反射的波到达之前就发生了闪络。因此,跨距长度对跳闸比的影响程度取决于塔架基础阻力。局部雷电活动会显着影响跳闸率。

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