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Transient Lightning Impulse Performance Analysis for Composite Transmission Line Tower

机译:复合输电线路铁塔的暂态雷电冲击性能分析

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In this paper, the transient impulse performances of a 330-kV composite transmission line tower under direct lightning strokes are comprehensively presented. An equivalent distributed parameter model combined with lumped capacitance elements for the tower is established. The wave impedances of the hybrid model are determined by using analytic equations. The lumped capacitances are calculated by 3-D finite element method (FEM). An accurate model for extended grounding structure (EGS) of the tower base considering the soil ionization is used to simulate its impulse performances. The wave process of the tower is analyzed by using the electromagnetic transient program (EMTP). The proper grounding conductor system is determined for the case of a superior lightning impulse performance considering three diverse grounding configurations. The influence of radius of the grounding conductor is assessed. The numerical electromagnetic field analysis, finite-difference time-domain (FDTD) simulation is applied to verify the validity of the presented hybrid model. Then, the influence of the wave-front time of the lightning current, the soil resistivity, the dimension of the EGS, and their combined effect on the transient impulse performances for the EGS are analyzed and discussed.
机译:全面介绍了330 kV复合输电线路铁塔在直接雷击下的瞬态脉冲性能。建立了等效的分布参数模型,并结合了塔的集总电容元件。混合模型的波阻抗通过使用解析方程确定。集总电容通过3-D有限元方法(FEM)计算。考虑土壤电离的塔基扩展接地结构(EGS)的精确模型用于模拟其脉冲性能。塔的波动过程通过使用电磁瞬变程序(EMTP)进行分析。在考虑三种不同的接地配置的情况下,要确定具有优越的雷电冲击性能的接地导体系统。评估接地导体半径的影响。通过数值电磁场分析,时域有限差分(FDTD)仿真验证了所提混合模型的有效性。然后,分析并讨论了雷电流的波前时间,土壤电阻率,EGS的尺寸及其对EGS瞬态脉冲性能的综合影响。

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