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DESIGN OF AN OFFSHORE THREE-BLADED VERTICAL AXIS WIND TURBINE FOR WIND TUNNEL EXPERIMENTS

机译:风洞实验的海上三叶垂直轴风轮机设计

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The rapid shrinkage of fossil fuel sources and contrary fast-growing energy needs of social, industrial and technological enhancements, necessitate the need of different approaches to exploit the various renewable energy sources. Among the several technological alternatives, wind energy is one of the most emerging prospective because of its renewable, sustainable and environment friendly nature, especially at its offshore locations. The recent growth of the offshore wind energy market has significantly increased the technological importance of the offshore vertical axis wind turbines, both as floating or fixed installations. Particularly, the class of lift-driven vertical axis wind turbines is very promising; however, the existing design and technology is not competent enough to meet the global need of offshore wind energy. In this context, the project AEROPITCH co-investigated by EOLFI, CORETI and IRPHE aims at the development of a robust and sophisticated offshore vertical axis wind turbine, which would bring decisive competitive advantage in the offshore wind energy market. In this paper, simulations have been performed on the various airfoils of NACA 4-series, 5-series and Selig profiles at different chord Reynolds numbers of 60000, 100000 and 140000 using double multiple streamtube model with tip loss correction. Based on the power coefficient, the best suitable airfoil SI046 has been selected for a 3-bladed vertical axis wind turbine. Besides the blade profile, the turbine design parameters such as aspect ratio and solidity ratio have also been investigated by varying the diameter and chord of the blade. Further, a series of wind tunnel experiments will be performed on the developed wind turbine, and the implementation of active pitch control in the developed turbine will be investigated in future research.
机译:化石燃料来源的快速收缩和社会,工业和技术增强的难以增长的能源需求,需要采用不同方法来利用各种可再生能源。在若干技术替代方案中,风能是最新兴的前瞻性之一,因为其可再生,可持续和环保性质,特别是在其海上地点。最近近海风能市场的增长显着提高了海上垂直轴风力涡轮机的技术重要性,既可以浮动或固定安装。特别是,升降驱动的垂直轴风力涡轮机非常有前途;然而,现有的设计和技术不足以满足海上风能的全球需求。在这方面,由Eolfi,Coreti和Irphe调查的项目Aeropitch旨在开发强大而复杂的海上垂直轴风力涡轮机,这将为海上风能市场带来果断的竞争优势。在本文中,使用双倍多个流摩擦模型在不同的Chord reynolds数量的Naca 4系列,5系列和SELIG型材的各种翼型上进行了模拟,使用具有尖端损耗校正的双倍汇流仪模型,以60000,100000和140000的不同弦雷诺数。基于功率系数,已选择最佳合适的翼型Si046,用于3叶垂直轴风力涡轮机。除了叶片轮廓之外,还通过改变叶片的直径和弦来研究诸如纵横比和稳定性的涡轮机设计参数。此外,将在发达的风力涡轮机上进行一系列风洞实验,并且将在未来的研究中研究发达的涡轮机中的主动间距控制。

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