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Numerical calculation of aerodynamics wind turbine blade S809 airfoil and comparison of theoretical calculations with experimental measurements and confirming with NREL data

机译:空气动力学风力涡轮机叶片S809翼型的数值计算及实验测量理论计算的比较,并用NREL数据证实

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Aerodynamic performance of the airfoil plays the most important role to obtain economically maximum efficiency from a wind turbine. Therefore airfoil should have an ideal aerodynamic shape. In this study, aerodynamic simulation of S809 airfoil is conducted and obtained result compared with previously made NASA experimental result and NREL theoretical data. At first, Lift coefficient, lift to drag ratio and pressure coefficient around S809 airfoil are calculated with SST turbulence model, and are compared with experimental and other theoretical data to correlate simulation correctness of the computational approaches. And result indicates good correlation with both experimental and theoretical data. This calculation point out that as the increasing relative velocity, lift to drag ratio increases. Lift to drag ratio attain maximum at the angle around 6 degree and after that starts to decrease again. Comparison shows that CFD code used in this calculation can predict aerodynamic properties of airfoil.
机译:翼型的空气动力学性能起到从风力涡轮机获得经济上最大效率的最重要作用。因此,翼型应该具有理想的空气动力学形状。在该研究中,与先前制造的NASA实验结果和NREL理论数据相比,进行了S809翼型的空气动力学模拟和获得结果。首先,利用SST湍流模型计算升力系数,升力与S809翼型围绕S809翼型的压力系数,并与实验和其他理论数据进行比较,以关联计算方法的模拟正确性。结果表明与实验和理论数据良好的相关性。该计算指出,随着相对速度的增加,提升到拖动比增加。举起拖动比率在6度左右的角度达到最大值,然后开始再次减少。比较表明,该计算中使用的CFD代码可以预测翼型的空气动力学性质。

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