Lightning performance and formula description of a Y-shaped composite pylon considering the effect of tower-footing impedance

K. Yin, M. Ghomi, F. D. da Silva, C. Bak, Hanchi Zhang, Qian Wang, H. Skouboe
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Abstract

This paper presents systematic research on the lightning performance of a novel Y-shaped composite pylon for 400 kV transmission lines and the feasibility of empirical formulas for this kind of tower when considering the effect of tower-footing impedance. The transient overvoltage response to a lightning surge at the tip of the pylon is modeled in PSCAD/EMTDC. Compared with the Donau tower, the composite pylon shows a similar backflash rate (BFR) level. Then, we use qualitative analysis based on lumped parameter model and distributed parameter model to predict the critical flashover current (IC) of the composite pylon. We find that the calculated results exhibit higher error deflection when the existing empirical formulas are applied in the Y-shaped pylon. Furthermore, the simulated lightning performance has a lower sensitivity to varied tower-footing impedance compared with empirical formula calculation. The special structure of the Y-shaped pylon, the discontinuity in surge impedance and the soil ionization are analyzed to account for the role of tower-footing impedance on lightning performance. Finally, we improve the accuracy of the empirical formulas to the Y-shaped pylon lightning performance and discuss the effect of the footing impedance on the BFR.
考虑塔基阻抗影响的y形复合塔防雷性能及公式描述
本文系统地研究了一种新型的400kv输电线路y形复合塔的防雷性能,并在考虑塔底阻抗影响的情况下,探讨了该型塔经验公式的可行性。在PSCAD/EMTDC中模拟了塔端雷击浪涌的瞬态过电压响应。与多瑙塔相比,复合塔具有相似的反闪率(BFR)水平。然后,采用基于集总参数模型和分布参数模型的定性分析方法对复合塔的临界闪络电流进行了预测。结果表明,将已有的经验公式应用于y形塔时,计算结果有较大的误差偏差。此外,与经验公式计算相比,模拟雷击性能对塔底阻抗变化的敏感性较低。分析了y形塔的特殊结构、浪涌阻抗的不连续以及土壤电离等因素,说明了塔基阻抗对防雷性能的影响。最后,提高了经验公式对y形塔防雷性能的准确性,并讨论了基础阻抗对桥架防雷性能的影响。
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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