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Effect of blade pitch angle on aerodynamic performance of straight-bladed vertical axis wind turbine

机译:桨距角对直叶片垂直轴风力发电机空气动力性能的影响

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摘要

Wind energy is one of the most promising renewable energy sources, straight-bladed vertical axis wind turbine (S-VAWT) appears to be particularly promising for the shortage of fossil fuel reserves owing to its distinct advantages, but suffers from poor self-starting and low power coefficient. Variable-pitch method was recognized as an attractive solution to performance improvement, thus majority efforts had been devoted into blade pitch angle effect on aerodynamic performance. Taken into account the local flow field of S-VAWT, mathematical model was built to analyze the relationship between power outputs and pitch angle. Numerical simulations on static and dynamic performances of blade were carried out and optimized pitch angle along the rotor were presented. Comparative analyses of fixed pitch and variable-pitch S-VAWT were conducted, and a considerable improvement of the performance was obtained by the optimized blade pitch angle, in particular, a relative increase of the power coefficient by more than 19.3%. It is further demonstrated that the self-starting is greatly improved with the optimized blade pitch angle.
机译:风能是最有前途的可再生能源之一,直刃垂直轴风力涡轮机(S-VAWT)似乎特别有希望由于其独特的优势而缺乏化石燃料储备,但遭受差的自动启动和缺陷低功率系数。可变间距法被认为是对性能提高的有吸引力的解决方案,因此大多数努力都致力于对空气动力学性能的叶片俯仰角效应。考虑到S-VAWT的局部流场,建立了数学模型,以分析电力输出和俯仰角之间的关系。呈现了刀片静态和动态性能的数值模拟,并呈现出沿转子的优化俯仰角。进行了固定间距和可变间距S-VAWT的比较分析,通过优化的叶片桨距角度获得了相当大的性能改善,特别是电力系数的相对增加超过19.3%。进一步证明,利用优化的刀片桨距角大大提高了自动启动。

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