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Unsteady flow over offshore wind turbine airfoils and aerodynamic loads with computational fluid dynamic simulations

机译:计算流体动力学模拟在海上风力涡轮机翼型上的非定常流动和气动载荷

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摘要

The first notable megawatt class wind turbine, which was the pioneer of improvement in the blade performance in large wind turbines, appeared in Vermont. Nowadays, modern wind turbines are using blades with multi-airfoils at different sections. In this study, in order to indicate the best airfoil profile for the optimum performance in different sections of a blade, five popular airfoils, including S8xx, FFA and AH series, were studied. On the large-scale profile, shear stress transport K-omega model was applied for the simulation of horizontal axis wind turbines for different wind speeds. The aerodynamic simulation was accomplished using computational fluid dynamic method, which in turn is based on the finite volume method, and semi-implicit method for pressure-linked equations algorithm is used for pressure-velocity coupling. The governing equations applied in this simulation are the unsteady Reynolds-averaged Navier-Stokes equations. The aerodynamic coefficients of lift and drag were calculated at different angle of attacks and different wind speeds. The results were validated by EPPLER code, XFOIL and experimental data of the US National Renewable Energy Laboratory. The results showed that S818 profile is the best profile in terms of gaining the highest lift coefficient with the lowest angle of attack at the root of the blades. The findings also indicated that the selected model can predict the exact geometry with a high precision.
机译:佛蒙特州出现了第一台著名的兆瓦级风力涡轮机,该涡轮机是改善大型风力涡轮机叶片性能的先驱。如今,现代风力涡轮机在不同区域使用的叶片带有多翼型。在这项研究中,为了指出最佳的翼型轮廓,以在叶片的不同部分获得最佳性能,研究了五种流行的翼型,包括S8xx,FFA和AH系列。在大型剖面上,将剪切应力传递K-omega模型用于模拟不同风速的水平轴风力涡轮机。空气动力学模拟是使用计算流体动力学方法完成的,而流体动力学方法又是基于有限体积方法,而压力链接方程算法的半隐式方法用于压力-速度耦合。在此模拟中应用的控制方程式是非恒定雷诺平均Navier-Stokes方程式。计算了在不同迎角和不同风速下的升力和阻力的空气动力学系数。结果通过EPPLER代码,XFOIL和美国国家可再生能源实验室的实验数据进行了验证。结果表明,就获得最大升力系数和叶片根部攻角最小的角度而言,S818轮廓是最佳轮廓。研究结果还表明,所选模型可以高精度预测准确的几何形状。

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