Study on Transient Overvoltage and Surge Arrester Electrical Stresses in Offshore Wind Farms Under Multiple Lightning Strokes

避雷器 过电压 海洋工程 浪涌 电涌放电器 瞬态(计算机编程) 海上风力发电 涡轮机 脉冲(物理) 海底管道 雷击 工程类 电气工程 闪电(连接器) 环境科学 风力发电 电流(流体) 电力传输 电力系统 塔楼 动力传输
作者
Jie Zhang,Yong Wang,Jun Xiong,Junxiang Liu,Lu Zhu,Chao Huang,Jianfeng Shi,Yongxia Han
出处
期刊:Journal of Marine Science and Engineering [MDPI AG]
卷期号:13 (12): 2307-2307
标识
DOI:10.3390/jmse13122307
摘要

Lightning strikes are a major cause of wind turbine (WT) damage, with approximately 80% of cloud-to-ground lightning strikes exhibiting a multi-stroke characteristic. Therefore, studying the transient overvoltages induced by multiple lightning strokes is essential for the effective lightning protection of offshore WTs. Firstly, a multiple-stroke lightning current model representative of Guangdong Province, China, is established based on data from the lightning location system and rocket-triggered lightning experiments. Simulations are then employed to analyze the transient overvoltage of a Guangdong offshore wind farm under multiple lightning strikes. Simulation results indicate that when a WT is subjected to a two-stroke lightning flash, with current amplitudes corresponding to a cumulative probability density of approximately 1%, the surge arrester A1 must be configured with four parallel columns to ensure the insulation safety of the equipment without sustaining damage. Additionally, adequate electrical clearance must be maintained between the power cable and the tower wall, or alternatively, a high-strength insulating material may be applied over the cable armor to prevent flashover. Moreover, it is observed that the front time of the impulse current flowing through the surge arrester is approximately 2 μs, significantly shorter than the front time specified in IEC 60099-4 for the repetitive charge transfer capability test of ZnO varistors. Hence, it is essential to consider local lightning intensity and distribution characteristics when studying the transient overvoltages in offshore wind farms, optimizing surge arrester configurations, and assessing the impulse withstand performance of ZnO varistors, in order to ensure the safe and stable operation of offshore WTs.
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