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On the aerodynamics of variable-geometry oval-trajectory Darrieus wind turbines

机译:变几何椭圆轨迹Darrieus风力涡轮机的空气动力学研究

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A new computational model for the aerodynamics of vertical-axis wind turbines is introduced. It is based on the double-multiple streamtube concept and it incorporates the capacity of dealing with rotors whose blades follow oval-trajectories at variable setting-angles. We applied this model to the study of the aerodynamics of an innovative concept in extra-large wind-power plants: the VGOT (variable-geometry oval-trajectory) Darrieus wind turbine. Due to the especial geometric characteristics of the VGOT Darrieus, it was necessary to propose three new non-dimensional parameters to quantify its performance under different wind-conditions: the equivalent power coefficient, the equivalent solidity coefficient and the trajectory efficiency. We show some numerical results testing several rotor configurations working under different wind scenarios.
机译:介绍了一种新型的垂直轴风力发电机的空气动力学计算模型。它基于双倍流管概念,并具有处理转子的能力,这些转子的叶片在可变的设定角度下遵循椭圆形轨迹。我们将此模型应用于超大型风力发电厂的创新概念的空气动力学研究:VGOT(可变几何椭圆形轨迹)Darrieus风力涡轮机。由于VGOT Darrieus的特殊几何特性,有必要提出三个新的无量纲参数来量化其在不同风况下的性能:等效功率系数,等效固体系数和弹道效率。我们显示了一些数值结果,测试了在不同风况下工作的几种转子配置。

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