首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >AERODYNAMIC DESIGN OPTIMIZATION OF ELLIPTICAL-BLADED SAVONIUS-STYLE WIND TURBINE BY NUMERICAL SIMULATIONS
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AERODYNAMIC DESIGN OPTIMIZATION OF ELLIPTICAL-BLADED SAVONIUS-STYLE WIND TURBINE BY NUMERICAL SIMULATIONS

机译:基于数值模拟的椭圆叶片风轮机气动设计优化

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Savonius-style wind turbine (SSWT), a class of vertical-axis wind turbine, appears to be promising for off-shore applications because of its design simplicity, good starting ability, insensitivity to wind direction, relatively low operating speed, low cost and easy installation. Various blade shapes have been used over the years to improve the performance of this class of turbine. In the recent past, an elliptic-bladed profile with sectional cut angle of 50° has shown its potential to harness the wind energy more efficiently. The present study aims to optimize this profile by numerical simulations. In view of this, the elliptical-bladed profiles are tested at different sectional cut angles of θ = 45°, 47.5°, 50° and 55°. The shear stress transport (SST) κ-ω turbulence model is used to simulate the flow field, and thereafter, the torque and power coefficients are obtained at the rotating conditions. From 2D simulation, pressure and velocity contours are generated and analyzed. 2D simulations are also carried out for a semi-circular bladed profile in order to have a direct comparison. The numerical study demonstrates an improved flow characteristics, and hence the power coefficient of the elliptical-bladed profile at = 47.5°. Finally, 3D simulation is carried out to visualize and analyze the flow field around the optimum elliptical-bladed rotor at a tip speed ratio of 0.8. The aspect ratio of the rotor for the 3D simulation is kept at 0.7.
机译:Savonius型风力涡轮机(SSWT)是一类垂直轴风力涡轮机,由于其设计简单,启动能力强,对风向不敏感,运行速度相对较低,成本低廉,简易安装。多年来,已使用各种叶片形状来改善此类涡轮机的性能。最近,截面角为50°的椭圆叶片轮廓显示了其更有效地利用风能的潜力。本研究旨在通过数值模拟来优化此轮廓。鉴于此,以不同的截面切角θ= 45°,47.5°,50°和55°来测试椭圆叶片轮廓。用剪切应力传递(SST)κ-ω湍流模型模拟流场,然后在旋转条件下获得转矩和功率系数。通过2D模拟,可以生成并分析压力和速度等值线。为了进行直接比较,还对半圆刀片轮廓进行了2D模拟。数值研究证明了改善的流动特性,因此椭圆叶片轮廓的功率系数为= 47.5°。最后,进行3D仿真,以可视化和分析尖端速度比为0.8的最佳椭圆叶片转子周围的流场。用于3D模拟的转子的长宽比保持在0.7。

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