升力型垂直轴风力涡轮机的自启动评估:应用于非对称翼型的方法和计算工具

N. Batista, R. Melício, J. C. O. Marias, J. Catalão
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引用次数: 18

摘要

风力发电的快速增长和对分散能源发电的智能电网的需求,特别是在城市地区,增加了对垂直轴风力涡轮机(VAWT)的兴趣。Darrieus型VAWT的性能预测是一项非常复杂的任务,因为它的叶片在三维气动环境中绕转子轴运动,导致几种流动现象,如动态失速、流动分离、流动尾迹变形和它们自然无法自启动。在升力型涡轮机中,自启动不能力可以通过使用几个或多或少复杂的解决方案来克服,其中之一是开发能够使风力涡轮机自启动的叶片轮廓。因此,本文的重点是提出一种新的方法,快速开发新的叶片轮廓,为自启动能力的达瑞乌斯型VAWT。
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Self-start evaluation in lift-type vertical axis wind turbines: Methodology and computational tool applied to asymmetrical airfoils
The rapid growth of wind power generation and the need for a smarter electrical grid with a decentralized energy generation, especially in the urban areas, has increased the interest in vertical axis wind turbines (VAWT). The Darrieus type VAWT performance prediction is a very complex task, since its blades move around the rotor axis in a three dimensional aerodynamic environment that leads to several flow phenomena, such as, dynamic stall, flow separation, flow wake deformations and their natural inability to self-start. In the lift-type turbines the self-start incapability can be overcome with the use of several more or less complex solutions, being one of them the development of a blade profile capable of making the wind turbines self-start. Hence, this paper focuses on presenting a new methodology for fast development of new blade profiles, for self-start capable Darrieus type VAWT.
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