首页> 外文期刊>Structural health monitoring >Active vibration-based structural health monitoring system for wind turbine blade: Demonstration on an operating Vestas V27 wind turbine
【24h】

Active vibration-based structural health monitoring system for wind turbine blade: Demonstration on an operating Vestas V27 wind turbine

机译:基于主动振动的风力发电机叶片结构健康监测系统:在运行中的Vestas V27风力发电机上的演示

获取原文
获取原文并翻译 | 示例
           

摘要

This study presents a structural health monitoring system that is able to detect structural defects of wind turbine blade such as cracks, leading/trailing-edge opening, or delamination. It is shown that even small defects of at least 15cm size can be detected remotely without stopping the wind turbine. The structural health monitoring system presented is vibration-based: mechanical energy is artificially introduced by means of an electromechanical actuator, whose plunger periodically hits the blade. The induced vibrations propagate along the blade and are picked up by accelerometers mounted along the blade. The vibrations in mid-range frequencies are utilized: this range is above the frequencies excited by blade-wind interaction, ensuring a good signal-to-noise ratio. At the same time, the corresponding wavelength is short enough to deliver required damage detection resolution and long enough to be able to propagate the entire blade length. This article demonstrates the system on a Vestas V27 wind turbine. One blade of the wind turbine was equipped with the system, and a 3.5-month monitoring campaign was conducted while the turbine was operating normally. During the campaign, a defecta trailing-edge openingwas artificially introduced into the blade and its size was gradually increased from the original 15 to 45cm. Using a semi-supervised learning algorithm, the system was able to detect even the smallest amount of damage while the wind turbine was operating under different weather conditions. This article provides detailed information about the instrumentation and the measurement campaign and explains the damage detection algorithm.
机译:这项研究提出了一种结构健康监测系统,该系统能够检测风力涡轮机叶片的结构缺陷,例如裂纹,前缘/后缘开口或分层。结果表明,即使不停止风力发电机,也可以远程检测至少15厘米大小的小缺陷。提出的结构健康监测系统是基于振动的:通过机电致动器人工引入机械能,该机械致动器的柱塞周期性地撞击叶片。感应的振动沿叶片传播,并由沿叶片安装的加速度计拾取。利用了中频范围的振动:该范围高于叶片-风相互作用激发的频率,从而确保了良好的信噪比。同时,相应的波长足够短以提供所需的损坏检测分辨率,并且足够长以能够传播整个叶片长度。本文演示了Vestas V27风力涡轮机上的系统。风力涡轮机的一个叶片装有该系统,并且在风力涡轮机正常运行时进行了为期3.5个月的监视活动。在战役期间,将人为缺陷的后缘开口人工引入到叶片中,叶片的尺寸从原来的15cm逐渐增加到45cm。使用半监督学习算法,当风力涡轮机在不同天气条件下运行时,该系统甚至可以检测到最小的损坏。本文提供有关仪器和测量活动的详细信息,并说明损坏检测算法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号