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Numerical investigation of dimple effects on darrieus vertical axis wind turbine

机译:达里厄斯垂直轴风力发电机的酒窝效应的数值研究

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The Darrieus wind turbine is a type of vertical-axis wind turbines which, in spite of its simple structure, is very complex to analyze. In terms of aerodynamics, Darrieus VAWTs have properties which tend to make them distinctive of horizontal-axis wind turbines but generally are less effective. In the present research, a cavity is created into blade's profile of a VAWT to enhance its performance. The computational fluid dynamics have been used to simulate the turbine in turbulent flow and finally calculate the forces affecting it. The shear stress transport (SST) k-w turbulence model has been used to complete the governing equations and the turbine has been modeled in two dimensions. In order to enhance efficiency and aerodynamic performance of the turbine, effects of different dimple parameters including diameter, profile and its location has been considered. The optimum airfoil state has been found with circular dimple with diameter equal to 8% of cord length located on pressure side of the airfoil and near the leading edge. Eventually, it was observed that the efficiency at optimal performance (lambda = 2.6) and average efficiencies of the turbine were 18% and 25% improved when using the airfoil with a cavity, as compared to the reference airfoil. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Darrieus风力涡轮机是一种垂直轴风力涡轮机,尽管其结构简单,但分析起来却非常复杂。就空气动力学而言,Darrieus VAWT具有的性能往往使其与水平轴风力涡轮机不同,但通常效率较低。在本研究中,在VAWT的叶片轮廓中创建了一个空腔,以增强其性能。计算流体动力学已用于模拟湍流中的涡轮,并最终计算出影响涡轮的力。剪切应力传输(SST)k-w湍流模型已用于完成控制方程,并且涡轮已在二维中建模。为了提高涡轮机的效率和空气动力性能,已经考虑了不同酒窝参数(包括直径,轮廓及其位置)的影响。已经发现具有直径等于绳索长度的8%的圆形凹痕的最佳翼型状态,该直径位于翼型的压力侧且靠近前缘。最终,观察到,与参考型机翼相比,当使用带有空腔的机翼时,最佳性能下的效率(λ= 2.6)和涡轮的平均效率分别提高了18%和25%。 (C)2017 Elsevier Ltd.保留所有权利。

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