A novel blade design for Savonius wind turbine based on polynomial bezier curves for aerodynamic performance enhancement

被引:16
作者
Zemamou, M. [1 ]
Toumi, A. [2 ]
Mrigua, K. [1 ]
Lahlou, Y. [1 ]
Aggour, M. [1 ]
机构
[1] Univ Ibn Tofail, Fac Sci, Lab Renewable Energies & Environm, Kenitra, Morocco
[2] Univ Hassan 1er, Lab Ingn Management Ind & Innovat, Settat, Morocco
关键词
Savonius rotor; Bezier curves; power coefficient; wind energy; SINGLE-STAGE; OPTIMIZATION; ROTOR; IMPROVEMENT; TESTS; SHAPE;
D O I
10.1080/15435075.2020.1779077
中图分类号
O414.1 [热力学];
学科分类号
摘要
Advanced wind turbine designs and technologies have been evolved to take advantage of wind energy. Despite the significant progress already attained, the need for a dependable wind energy converter particularly devoted to small-scale applications remains a challenging issue. Due to its design simplicity, Savonius wind turbine is the most suitable candidate for such applications. It operates at low wind speed, with the necessary starting capacity and insensitivity to wind directions. Moreover, in the literature related to wind energy, the Savonius rotor is known for its low performance compared to other types of wind turbines. In this paper, we present a study into the utilization of Bezier curves and transient computational fluid dynamics (CFD) to optimize the conventional Savonius blade design. The k-omega SST turbulence model is employed to perform a series of CFD simulations in order to assess the power coefficient of each generated design. A validation of optimization results using the Taguchi method was carried out. The comparative analysis of the torque and power coefficients shows a significant increase in the power coefficient (C-p). The optimal C(p)is 0.35 and is 29% higher than the conventional Savoniu wind turbine (SWT). Subsequently, the effectiveness of the innovative geometry is proved by improved pressure and velocity distributions around blades of novel design.
引用
收藏
页码:652 / 665
页数:14
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