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Blade Design Optimisation for Fixed-Pitch Fixed-Speed Wind Turbines

机译:定距定速风力涡轮机叶片设计优化

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摘要

Fixed-pitch fixed-speed (FPFS) wind turbines have some distinct advantages over other topologies for small wind turbines, particularly for low wind speed sites. The blade design of FPFS wind turbines is fundamentally different to fixed-pitch variable-speed wind turbine blade design. Theoretically, it is difficult to obtain a global mathematical solution for the blade design optimisation. Through case studies of a given baseline wind turbine and its blade airfoil, this paper aims to demonstrate a practical method for optimum blade design of FPFS small wind turbines. The optimum blade design is based on the aerodynamic characteristics of the airfoil, that is, the lift and drag coefficients, and the annual mean wind speed. The design parameters for the blade optimisation include design wind speed, design tip speed ratio, and design attack angle. A series of design case studies using various design parameters are investigated for the wind turbine blade design. The design outcomes are analyzed and compared to each other against power performance of the rotor and annual energy production. The design outcomes from the limited design cases demonstrate clearly which blade design provides the best performance. This approach can be used for any practice of FPFS wind turbine blade design and refurbishment.
机译:固定螺距定速(FPFS)风力涡轮机相对于小型风力涡轮机(尤其是低风速站点)的其他拓扑具有一些明显的优势。 FPFS风力涡轮机的叶片设计从根本上不同于定距变速风力涡轮机叶片设计。从理论上讲,很难获得优化叶片设计的全局数学解决方案。通过对给定的基准风力涡轮机及其叶片翼型进行案例研究,本文旨在证明一种实用的方法来优化FPFS小型风力涡轮机的叶片设计。最佳叶片设计基于机翼的空气动力学特性,即升力和阻力系数以及年平均风速。叶片优化的设计参数包括设计风速,设计叶尖速比和设计攻角。针对风力涡轮机叶片设计,研究了使用各种设计参数进行的一系列设计案例研究。对设计结果进行分析,并根据转子的功率性能和年发电量相互比较。有限设计案例的设计结果清楚地表明了哪种刀片设计可提供最佳性能。该方法可用于FPFS风力涡轮机叶片设计和翻新的任何实践。

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