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Validation of Individual Pitch Control by Field Tests on Two- and Three-Bladed Wind Turbines

机译:通过两叶和三叶风力涡轮机的现场试验验证单个桨距控制

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摘要

Further improvements in the cost-effectiveness of wind turbines drive designers toward larger, lighter, and more flexible structures, in which more intelligent control systems play an important part in actively reducing the applied structural loads. These improvements also help to eliminate the need for wind turbines to simply withstand the full force of the applied loads through the use of stronger, heavier, and therefore more expensive structures. One way to reduce the loads is to use individual pitch control (IPC), whereby each blade receives a different pitch command to compensate for asymmetrical loads caused by nonuniform flow across the rotor. Originating in helicopters, the use of IPC for wind turbines was suggested for many years. Although many simulation studies have shown that significant load reductions are possible, confirmation of this using field tests on a real turbine in natural turbulence is important to give wind turbine designers the confidence to design to the reduced loads that IPC can deliver. This paper presents the results of field tests on two different 600-kW wind turbines, one two-bladed and one three-bladed. The results demonstrate convincingly that the predicted load reductions can be achieved in practice.
机译:风力涡轮机成本效益的进一步提高驱使设计人员朝着更大,更轻,更灵活的结构发展,其中更智能的控制系统在积极减少施加的结构载荷方面发挥着重要作用。这些改进还有助于消除风力涡轮机通过使用更坚固,更重,因此更昂贵的结构来简单承受所施加负载的全部力的需求。减少负载的一种方法是使用单独的桨距控制(IPC),从而使每个叶片接收不同的桨距指令,以补偿由于不均匀的流经转子造成的不对称负载。最初建议将IPC应用于风力涡轮机已有很多年。尽管许多仿真研究表明,可以大幅度降低负载,但是在自然湍流下对实际涡轮机进行现场测试来确认这一点很重要,这对于使风力涡轮机设计人员有信心设计IPC可以降低的负载。本文介绍了对两台不同的600 kW风力涡轮机(一台两叶片和一台三叶片)进行现场测试的结果。结果令人信服地表明,在实践中可以实现预期的负载减少。

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