Surge voltage and environmental electromagnetic field analysis for HV composite transmission tower under lightning strokes

Youpeng Huangfu, Shuhong Wang, X. Tao, Song Wang, Bin Yang, Guolin Wang, Yuxi Zhang
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引用次数: 2

Abstract

In this paper, the surge voltages of grounding system for a 330 kV high voltage (HV) composite transmission tower under lightning strokes are comprehensively presented. An equivalent distributed parameter model of the tower is established to investigate the lightning overvoltage by using EMTP program. The distributed capacitances among the adjacent two layers of cross arms, the capacitances between the lines and grounding ladders are calculated by using three dimensional (3D) Finite Element Method (FEM). The wave impedances of the ground wire cross arm, grounding ladder, and metallic tower body are determined by using the analytic equations. The lightning overvoltage calculation and comparison are conducted considering the diverse grounding configurations, such as the single-, double-, and three-ladder grounding systems. The influence of the radius of the grounding ladder on the overvoltage characteristics is analyzed. The proper grounding ladder system is determined so that the voltage between ladder and transmission lines is less than the flashover initial voltage of the cross arm. In order to evaluate the electromagnetic environment around the tower, the induced electromagnetic field at the level of 1.5 m above the ground is computed by 3D FEM. The simulated results suggest that the electric field intensity is much greater than the safety threshold of electric field intensity around the transmission lines.
高压复合输电塔雷击下的浪涌电压及环境电磁场分析
本文全面介绍了330 kV高压复合输电塔在雷击作用下接地系统的浪涌电压。利用EMTP程序建立了塔的等效分布参数模型,对雷击过电压进行了研究。采用三维有限元法计算了相邻两层横臂之间的分布电容、线与地梯之间的分布电容。利用解析方程确定了接地线横臂、接地梯和金属塔体的波阻抗。考虑单梯、双梯和三梯接地系统的不同接地配置,对雷电过电压进行计算和比较。分析了地梯半径对过电压特性的影响。确定合适的接地梯系统,使梯与传输线之间的电压小于横臂的闪络初始电压。为了评价塔体周围的电磁环境,采用三维有限元法计算了塔体距地面1.5 m处的感应电磁场。模拟结果表明,输电线路周围的电场强度远远大于电场强度的安全阈值。
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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