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Effects of pitch angle and blade camber on flow characteristics and performance of small-size Darrieus VAWT

机译:俯仰角和叶片外倾角对小型Darrieus VAWT流动特性和性能的影响

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摘要

This study builds up a simulation model, via Ansys/Fluent, to investigate the effects of pitch angle and blade camber on the flow characteristics and performance of small-size Darrieus vertical axis wind turbine (VAWT). The VAWT system is driven by a uniform wind speed (10 m/s). The blade profiles with three different cambers are NACA0012, 2412 and 4412, respectively; and the pitch angles vary between 10° and -10°. The user-defined function is employed to calculate the instantaneous moments produced by all the blades and rotate the VAWT system from rest. The flow structures, the vorticity fields and the performance on the blades will be addressed; also, the self-starting ability and the moment coefficient of the VAWT system are discussed. For the blade profiles studied, the initial acceleration is the largest at θ = -10° and decreases monotonously as the pitch angle increases from θ = -10° to θ = 10°. Further, at the same pitch angle, the larger the camber of the blade (NACA4412), the better is the self-starting ability of the VAWT system. The maximum root mean square moments have the maximum values at θ = 5° for all the blade profiles studied herein. The root mean square moments for NACA2412 are much higher than those of NACA0012 and 4412 at all pitch angles. However, the root mean square moments for NACA4412 are relatively insensitive to the variations in pitch angles.
机译:本研究通过Ansys / Fluent建立了一个仿真模型,以研究桨距角和叶片外倾角对小型Darrieus垂直轴风力涡轮机(VAWT)的流动特性和性能的影响。 VAWT系统由均匀的风速(10 m / s)驱动。具有三个不同外倾角的叶片轮廓分别为NACA0012、2412和4412。俯仰角在10°和-10°之间变化。用户定义的功能用于计算所有叶片产生的瞬时力矩,并使VAWT系统从静止状态旋转。将讨论叶片的流动结构,涡流场和性能。此外,还讨论了VAWT系统的自启动能力和力矩系数。对于研究的叶片轮廓,初始加速度在θ= -10°时最大,并且随着桨距角从θ= -10°到θ= 10°单调减小。此外,在相同的俯仰角下,叶片的外倾角(NACA4412)越大,VAWT系统的自启动能力就越好。对于本文研究的所有叶片轮廓,最大均方根矩在θ= 5°处具有最大值。在所有俯仰角下,NACA2412的均方根矩均比NACA0012和4412高。但是,NACA4412的均方根矩对俯仰角的变化相对不敏感。

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