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Bionic design of winged seed's aerodynamic force characteristics apply to wind turbine blades

机译:翅膀种子的空气动力学力特性的仿生设计适用于风力涡轮机叶片

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In the present study, the wing of the seed of the green maple (Acer serrulatum) was used as the imitated object, and the shape of the seed wing was analyzed. The study and design of the bionic wind turbine blade were then progressed by the ANSYS Fluent simulation software to perform the numerical computations of the aerodynamic and flow characteristics of the seed wing of the green maple. Also, based on the scale up contour of the seed wing of the green maple, a set of bionic blades was fabricated to build a small scale horizontal axis wind turbines (HAWT) with either three-blade or five-blade configuration. The turbine was tested in a wind tunnel to explore the correspondence between aerodynamic characteristics and the wind/electricity power transform efficiency. The numerical results, by an inspection of the trend of the lift coefficient curves, indicated that the seed wing of the green maple has larger range of angle of attack, 0° to 50°, without stall, which shows an aerodynamic advantage. In addition, the wind tunnel experiments of the wind turbine, with 5 bionic blades, 0.237583 m swept area, 15° angle of attack, and 5 m/s steady head wind conditions, showed that the highest wind/electricity power transform efficiency can be reached up to 37%.
机译:在本研究中,使用绿色槭树(Acer Serrulatum)的种子的机翼作为模仿物体,分析了种子翼的形状。然后,ANSYS流畅的仿真软件进展了仿生风力涡轮机叶片的研究和设计,以执行绿色枫木种子翼的空气动力学和流动特性的数值计算。此外,基于绿色枫树的种子翼的缩放轮廓,制造了一组仿生叶片,以构建具有三刀片或五刀片配置的小尺度水平轴风力涡轮机(HAWT)。在风洞中测试涡轮机以探索空气动力学特性与风/电力变换效率之间的对应关系。数值结果,通过检查升力系数曲线的趋势,表明绿色枫树的种子翼具有较大的攻角,0°至50°,没有摊位,这示出了空气动力学的优势。此外,风力涡轮机的风隧道实验,具有5个仿生叶片,0.237583 m扫过区域,15°攻角和5米/秒的稳态风条件,显示最高的风/电力变换效率达到37%。

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