风力机内雷电电流分布计算及浪涌保护

E. Shulzhenko, Kazuo Yamamoto, M. Rock
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引用次数: 0

摘要

本研究的目的是提供一种数值方法来评估闪电对风力涡轮机的影响。这是对日本富山县Nyuzen风力发电机调查的延续,由于数值模型的验证,该风力发电机配备了测量系统[1]。前一篇论文讨论了中压侧塔脚产生过电压的问题,以及在不同的雷电事件中它对安装的避雷器有什么影响。这个地方可以被认为是风力涡轮机在雷击事件中最脆弱的地方,因为避雷器不是直接设计来处理雷击电流的。在本研究中,采用EMTP-ATP中先前开发和验证的数值模型,并对其进行扩展,以包括观察到的风力发电机低压侧的电气部分及其外部防雷系统,该系统将从转子叶片尖端的雷击电流传导到塔基并产生过电压进入电力系统。对不同雷击电流进行了无过压保护和有过压保护的调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation of Lightning Current Distribution within a Wind Turbine and its Surge Protection
The aim of this study is to provide a numerical approach to evaluate lightning effects on the wind turbines. This is a continuation of the investigation conducted on the wind turbine in Nyuzen in Toyama Prefecture in Japan, which, for a validation reason of the numerical models, was equipped with a measurement system [1]. The previous paper was addressed the question of arose overvoltages in the tower foot on the medium voltage side and what effects it does have on the installed there surge arresters during different lightning events. This place could be considered as the most vulnerable for wind turbines during lightning events, since the surge arresters are not directly designed to handle lightning currents. During this study, the previously developed and validated numerical model in EMTP-ATP is taken and extended to include the electrical part on the low voltage side of the observed wind turbine as well as its external lightning protection system which conducts the lightning current from a rotor blade's tip into the tower base and generates overvoltages into the power system. The investigation is conducted without and with overvoltage protection system for different lightning currents.
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