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CFD simulations of power coefficients for an innovative Darrieus style vertical axis wind turbine with auxiliary straight blades

机译:辅助直叶片的创新Darrius风格垂直轴风风力涡轮机的电力系数CFD模拟

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The increasing price of fossil derivatives, global warming and energy market instabilities, have led to an increasing interest in renewable energy sources such as wind energy. Amongst the different typologies of wind generators, small scale Vertical Axis Wind Turbines (VAWT) present the greatest potential for off grid power generation at low wind speeds. In the present work, Computational Fluid Dynamic (CFD) simulations were performed in order to investigate the performance of an innovative configuration of straight-blades Darrieus-style vertical axis micro wind turbine, specifically developed for small scale energy conversion at low wind speeds. The micro turbine under investigation is composed of three pairs of airfoils, consisting of a main and auxiliary blades with different chord lengths. The simulations were made using the open source finite volume based CFD toolbox OpenFOAM, considering different turbulence models and adopting a moving mesh approach for the turbine rotor. The simulated data were reported in terms of dimensionless power coefficients for dynamic performance analysis. The results from the simulations were compared to the data obtained from experiments on a scaled model of the same VAWT configuration, conducted in a closed circuit open chamber wind tunnel facility available at the Laboratory of Industrial Measurements (LaMI) of the University of Cassino and Lazio Meridionale (UNICLAM). From the proposed analysis, it was observed that the most suitable model for the simulation of the performances of the micro turbine under investigation is the one-equation Spalart-Allmaras, even if under the conditions analysed in the present work and for TSR values higher than 1.1, some discrepancies between numerical and experimental data can be observed.
机译:化石衍生物的价格越来越多,全球变暖和能源市场稳定性,导致对风能等可再生能源的兴趣日益增长。在风力发电机的不同类型中,小规模的垂直轴风力涡轮机(VAWT)在低风速下呈现出电网发电的最大潜力。在本作工作中,进行计算流体动态(CFD)模拟,以研究直叶片Darrius式垂直轴微型风力涡轮机的创新配置的性能,专门用于低风速下的小规模能量转换。正在研究的微型涡轮机由三对翼型组成,由具有不同弦长的主要和辅助刀片组成。考虑不同的湍流模型并采用涡轮机转子的移动网格方法,使用基于开源有限卷的CFD工具箱OpenFoam进行了模拟。在动态性能分析的无量纲功率系数方面报道了模拟数据。将模拟的结果与在Cassino和Lazio的工业测量实验室(Lami)的闭路开放室风洞设施中进行的对相同VAWT配置的缩放模型的实验数据进行了比较。 Meridionale(Uniclam)。从所提出的分析中,观察到,在调查中模拟微型涡轮机的性能的最合适的模型是单方程,即使在本作工作中分析的条件和高于的TSR值下的条件下也是如此1.1,可以观察到数值和实验数据之间的一些差异。

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