首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Damage detection in a composite wind turbine blade using 3D scanning laser vibrometry
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Damage detection in a composite wind turbine blade using 3D scanning laser vibrometry

机译:一种使用3D扫描激光振动器的复合风力涡轮机叶片中的损坏检测

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摘要

As worldwide wind energy generation capacity grows, there is an increasing demand to ensure structural integrity of the turbine blades to maintain efficient and safe energy generation. Currently, traditional non-destructive testing methods and visual inspections are employed which require the turbine to be out-of-operation during the inspection periods, resulting in costly and lengthy downtime. This study experimentally investigates the potential for using Lamb waves to monitor the structural integrity of a composite wind turbine blade that has been subject to an impact representative of damage which occurs in service. 3D scanning laser vibrometry was used to measure Lamb waves excited at three different frequencies both prior to, and after, impact to identify settings for an optimal system. Signal processing techniques were applied to the datasets to successfully locate the damage and highlight regions on the structure where the Lamb wave was significantly influenced by the presence of the impact damage. Damage size resulting from the impact was found to correlate well with the laser vibrometry results. The study concluded that acousto-ultrasonic-based structural health monitoring systems have great potential for monitoring the structural integrity of wind turbine blades.
机译:随着全球风能发电能力的增长,需求越来越大,以确保涡轮机叶片的结构完整性,以保持有效和安全的能量。目前,采用传统的非破坏性测试方法和目视检查,该方法要求涡轮机在检测期间进行操作,导致昂贵和冗长的停机时间。本研究通过实验研究了使用羊羔波来监测复合风力涡轮机叶片的结构完整性,这一直受到在服务中发生的损坏的影响。 3D扫描激光振动器用于测量在三种不同频率下激发的羊波,在此之前,以后,影响最佳系统的设置。将信号处理技术应用于数据集以成功定位损伤和突出显示区域的损坏和突出区域,其中羔羊波的存在受冲击损伤的存在显着影响。发现受影响产生的损伤尺寸与激光振动器结果相比好。该研究得出结论,基于岩石基于超声的结构健康监测系统对监测风力涡轮机叶片的结构完整性有很大的潜力。

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