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Application of Circulation Controlled Blades for Vertical Axis Wind Turbines

机译:循环叶片在垂直轴风力发电机中的应用

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摘要

The blades of a vertical axis wind turbine (VAWT) rotor see an inconsistent angle of attack through its rotation. Consequently, VAWT blades generally use symmetrical aerofoils with a lower lift-to-drag ratio than cambered aerofoils tailored to maximise horizontal axis wind turbine rotor performance. This paper considers the feasibility of circulation controlled (CC) VAWT blades, using a tangential air jet to provide lift and therefore power augmentation. However CC blade sections require a higher trailing-edge thickness than conventional sections giving rise to additional base drag. The choice of design parameters is a compromise between lift augmentation, additional base drag as well as the power required to pump the air jet. Although CC technology has been investigated for many years, particularly for aerospace applications, few researchers have considered VAWT applications. This paper considers the feasibility of the technology, using Computational Fluid Dynamics to evaluate a baseline CC aerofoil with different trailing-edge ellipse shapes. Lift and drag increments due to CC are considered within a momentum based turbine model to determine net power production. The study found that for modest momentum coefficients significant net power augmentation can be achieved with a relatively simple aerofoil geometry if blowing is controlled through the blades rotation.
机译:垂直轴风力涡轮机(VAWT)转子的叶片通过其旋转会出现不一致的迎角。因此,VAWT叶片通常使用对称翼型,其翼升阻力比设计成使水平轴风力发电机转子性能最大化的弧形翼型更低。本文考虑了使用切向空气射流提供升力并因此增加功率的循环控制(CC)VAWT叶片的可行性。但是,CC叶片部分比传统部分需要更高的后缘厚度,从而导致额外的基础阻力。设计参数的选择是在提升力,额外的基础阻力以及泵送空气射流所需的功率之间的折衷方案。尽管CC技术已经研究了很多年,尤其是在航空航天应用中,但很少有研究人员考虑过VAWT应用。本文考虑了该技术的可行性,使用计算流体动力学来评估具有不同后缘椭圆形状的基线CC翼型。在基于动量的涡轮机模型中考虑了由于CC引起的升力和阻力增量,以确定净发电量。研究发现,对于适度的动量系数,如果通过叶片旋转控制吹气,则可以通过相对简单的翼型几何结构实现显着的净功率增加。

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