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FEASIBILITY STUDY OF PULTRUDED BLADES FOR WIND TURBINE ROTORS

机译:用于风力涡轮机转子的拉挤叶片的可行性研究

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In work performed under subcontract to the National Renewable Energy Laboratory (NREL), a preliminary design study and proof-of-concept field test were conducted to evaluate the feasibility of using pultruded blades for wind turbine rotors. A 400 kW turbine was selected for the design study, and a scaled 80 kW rotor was fabricated and tested as a demonstration of the concept. To examine the feasibility of pultruded blades, several issues were addressed, including power performance, tower strikes, yaw stability, stall flutter, fatigue, and rotor cost. Results showed that with proper design, rotors using pultruded blades demonstrate acceptable fatigue life and stable yaw behavior without tower strikes. Furthermore, blades using this technology may be manufactured for approximately half the cost of conventional blades. Field tests of the scaled rotor provided experimental data on power performance and loads while verifying stable yaw operation.
机译:在对国家可再生能源实验室(NREL)下进行的工作中,进行了初步设计研究和概念验证现场测试,以评估使用用于风力涡轮机转子的拉挤刀片的可行性。选择了400千瓦涡轮机用于设计研究,并制造缩放的80千瓦转子并测试为概念的示范。为了检查拉挤刀片的可行性,解决了几个问题,包括功率性能,塔撞击,偏航稳定性,失速扑振,疲劳和转子成本。结果表明,采用适当的设计,使用拉挤刀片的转子展示可接受的疲劳寿命和稳定的偏航行为,没有塔撞击。此外,可以制造使用该技术的叶片以用于传统叶片的成本的大约一半。缩放转子的现场测试为功率性能和负载提供了实验数据,同时验证了稳定的偏航操作。

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