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Improving VAWT performance through parametric studies of rotor design configurations using computational fluid dynamics

机译:通过使用计算流体动力学对转子设计配置进行参数研究来提高VAWT性能

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Vertical axis wind turbines present several advantages over the horizontal axis machines that make them suitable to a variety of wind conditions. However, due to the complexity of vertical axis wind turbine (VAWT) aerodynamics, available literature on VAWT performance in steady and turbulent wind conditions is limited. This paper aims to numerically predict the performance of a 5 kW VAWT under steady wind conditions through computational fluid dynamics modeling by varying turbine configuration parameters. Two-dimensional VAWT models using a cambered blade (1.5%) were created with open field boundary extents. Turbine configuration parameters studied include blade mounting position, blade fixing angle, and rotor solidity. Baseline case with peak Cp of 0.31 at tip-speed ratio of 4 has the following parameters: mounting position at 0.5c, zero fixing angle, and three blades (solidity = 0.3). Independent parametric studies were carried out and results show that a blade mounting position of 0.7c from the leading edge produces the best performance with maximum Cp = 0.315 while the worst case is a mounting position of 0.15c with peak Cp = 0.273. Fixing angle study reveals a toe-out setting of -1 degrees producing the best performance with peak Cp of 0.315 and the worst setting at toe-in of 1.5 degrees with peak Cp of 0.287. The solidity study resulted in the best case of four blades (solidity = 0.4) with peak Cp = 0.316 and the worst case of two blades (solidity = 0.2) with peak Cp = 0.283.
机译:与水平轴电机相比,垂直轴风力发电机具有几个优势,使它们适用于各种风况。但是,由于垂直轴风力涡轮机(VAWT)空气动力学的复杂性,有关VAWT在稳定和湍流风况下的性能的可用文献有限。本文旨在通过改变涡轮机配置参数,通过计算流体动力学建模,对稳态风条件下5 kW VAWT的性能进行数值预测。使用具有开放视野边界范围的弧形叶片(1.5%)创建二维VAWT模型。研究的涡轮机配置参数包括叶片安装位置,叶片固定角度和转子坚固性。在尖端速度比为4时,峰值Cp为0.31的基线情况具有以下参数:安装位置为0.5c,固定角度为零和三个刀片(坚固度= 0.3)。进行了独立的参数研究,结果表明,从前缘开始的0.7c刀片安装位置产生了最佳性能,最大Cp = 0.315,而最坏的情况是0.15c的安装位置,峰值Cp = 0.273。固定角度研究显示,趾部外露设置为-1度,在Cp值为0.315时产生最佳性能,而在趾部内为1.5度时的最差设置为0.287峰值Cp。坚固性研究的结果是,最佳刀片为四个刀片(坚固性= 0.4),峰值Cp = 0.316,最坏情况为两个刀片(坚固性= 0.2),峰值Cp = 0.283。

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