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The influence of flow field and aerodynamic forces on a straight-bladed vertical axis wind turbine

机译:流场和空气动力对直叶片垂直轴风力发电机的影响

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This paper has attempted to compile the assessment of flow field and aerodynamic forces acting on a small straight-bladed vertical axis wind turbine (VAWT). Two dimensional unsteady flows around the VAWT, operating at three different tip speed ratios in a wind tunnel, were investigated through the use of a Laser Doppler Velocimeter (LDV) system. Furthermore, in order to explicate the characteristics of aerodynamic forces, pressures acting on the blade surface were measured during the rotation by a multiport scanner mounted on the hub and pressure signals were transmitted to the stationary system through a wireless LAN. Velocity distribution proved the wind velocity deficit. While, the geometrical angle of attack and resultant flow velocity change periodically due to local wind velocity and direction depending on the azimuth angle. The power coefficient, tangential force, lift and drag which are obtained by pressure distribution are discussed as a function of blade azimuthally position, achieving a numerical quantification of the influence of tip speed ratio on overall rotor performance. As a result, it is clarified that aerodynamic forces show the maximum values when the blade passes through the upstream region. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文试图对作用在小型直叶片垂直轴风力涡轮机(VAWT)上的流场和空气动力进行评估。通过使用激光多普勒测速仪(LDV)系统研究了在风洞中以三种不同的尖端速度比运行的VAWT周围的二维非定常流动。此外,为了阐明空气动力的特性,在旋转过程中,通过安装在轮毂上的多端口扫描仪测量了作用在叶片表面上的压力,并且压力信号通过无线LAN传输到固定系统。速度分布证明风速不足。同时,由于局部风速和方向取决于方位角,几何攻角和合成流速周期性变化。讨论了通过压力分布获得的功率系数,切向力,升力和阻力与叶片方位角位置的函数关系,从而实现了叶尖速比对整体转子性能影响的数值量化。结果,明确了当叶片通过上游区域时,空气动力显示出最大值。 (C)2016 Elsevier Ltd.保留所有权利。

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