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NUMERICAL SIMULATION OF FLOW FIELD AROUND A CIRCULAR-BLADED BUTTERFLY WIND TURBINE

机译:圆弧形蝶形风轮机绕流场的数值模拟

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Three-dimensional computational fluid dynamics (3D-CFD) was performed to simulate the flow field around an aluminum circular-blade butterfly wind turbine, which is a vertical-axis-type turbine with four circular blades and a diameter of 2.06 m. Under the assumption of a loss factor of 0.8 due to a generator and an AC-DC converter, the CFD results agreed with the experimental results. Although tip vortices were observed at the top and bottom portions of the blades, the vorticity intensity was weaker than that of the straight-blade rotor case. In addition, the cross-sectional shape of the tip vortices seemed to be elliptical for circular blades rather than circular as for straight blades. As the tip speed ratio was less than 2, vortices arising from dynamic stall at maximum-radius portions of blades were observed at the downwind half-cycle as well as the upwind half-cycle. A feature of the vortices shed from a circular blade at the downwind half-cycle was the looped shape.
机译:进行三维计算流体动力学(3D-CFD)以模拟铝圆形叶片风力涡轮机周围的流场,该风力涡轮机是具有四个圆形叶片的垂直轴型涡轮机和直径为2.06米。由于发电机和AC-DC转换器,在损耗因子的假设下,CFD结果同意了实验结果。尽管在刀片的顶部和底部观察到尖端,但是涡旋强度比直叶转子壳体的涡流强度较弱。另外,尖端涡旋的横截面形状似乎是椭圆形的用于圆形叶片而不是用于直叶片的圆形。由于尖端速度比小于2,在下行半循环以及逆风半周期中观察到从叶片的最大半径部分的动态失速产生的涡流。从下行半循环处的圆形刀片的​​涡流的特征是环状形状。

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