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Experimental research on lightning shielding performance of large scaled UHV transmission line

机译:大型特高压输电线路雷电屏蔽性能试验研究

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摘要

In actual operation, the shielding failure rate of UHV transmission line is much higher than that in simulation, so it is crucial to study the lightning shielding performance by experimental research. The testing UHV transmission line model is scaled down in the ratio of 12.5 which is relatively large comparing to other testing models. Two kinds of negative switching impulse waveform were applied to HV rod to simulate the lightning descending leader. The probability of transmission line being stroked was calculated statistically by recording more than two thousand discharges and the factors that affecting the discharge probability were studied through contrast tests. The results show that the grounding condition, DC bias, the protection angle, the switching impulse voltages have an influence on the discharge probability, breakdown voltage and breakdown time. The spatial boundary of shielding failure area was determined in the middle of the span. The upper and lower spatial boundary and the distance between them increased with the increasing of the lateral distance between HV rod tip and transmission line model simultaneously.
机译:在实际运行中,特高压输电线路的屏蔽故障率远高于仿真中的故障率,因此通过试验研究雷电屏蔽性能至关重要。测试的特高压输电线路模型按12.5的比例缩小,与其他测试模型相比,该比例相对较大。对高压杆施加了两种负向开关脉冲波形,模拟了雷电下降的前导。通过记录2000多次放电来统计计算传输线发生冲程的概率,并通过对比测试研究影响放电概率的因素。结果表明,接地条件,直流偏置,保护角,开关冲击电压对放电概率,击穿电压和击穿时间都有影响。在跨度的中间确定了屏蔽失效区域的空间边界。空间上限和下限及其之间的距离随着HV杆尖和传输线模型之间的横向距离的增加而增加。

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