风电机组玻璃钢材料雷击试验研究

Yang Zhao, Yao Zhang
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引用次数: 0

摘要

为了研究用于风力发电机叶片和机舱的玻璃纤维增强聚合物(GFRP)材料在雷击下的损伤,在高压实验室中使用脉冲电流发生器(ICG)和三种不同配置的玻璃钢板进行了实验研究。GRPF板的第一种配置是带有雷电感受器和嵌入式下导体。GRPF板的第二种配置是只嵌入下导体。第三种配置只是纯GFRP材料,没有任何防雷系统(LPS)。结果表明,雷电感受器和下导体可以将大的雷电电流引入地面。如果没有感受器,直接撞击埋入的下导体,GFRP材料和埋入的下导体将发生爆裂燃烧。如果雷击在没有感受器和下导体的纯玻璃钢板上,该板也会爆炸和燃烧。玻璃钢板的涂层材料会影响燃烧时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Study of the Lightning Stroke to GFRP Material of Wind Turbines
In order to investigate the damage of Glass Fiber Reinforced Polymer (GFRP) material used in the blades and nacelles of wind turbines from lightning strokes, this paper provides an experimental study with impulse current generator (ICG) and three different configurations of GFRP plate in a highvoltage lab. The first configuration of GRPF plates is with lightning receptors and embedded down-conductors. The second configuration of GRPF plates is with only embedded down-conductors. The third configuration is just pure GFRP material without any Lightning Protection System (LPS). The results show that the lightning receptor and down-conductor can lead the large lightning current to the ground. If there is no receptor and the embedded down-conductor is directly struck, the GFRP material and embedded down-conductor will burst and burn. If the lightning strike at a pure GFRP plate without receptors and down-conductors, the plate will also burst and burn. The coating material of the GFRP plate will influence the burning time.
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