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首页> 外文期刊>E3S Web of Conferences >Power Coefficient Analysis of Double-blade Half-rotating Impeller Tidal Turbine Operating at Yaw
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Power Coefficient Analysis of Double-blade Half-rotating Impeller Tidal Turbine Operating at Yaw

机译:双叶片半旋转叶轮潮汐涡轮机的功率系数分析

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The double-blade half-rotating impeller tidal turbine (DHITT) is a new type of vertical shaft tidal current turbine with lift and resistance performance. The power coefficient of the DHITT is affected by the flow direction. In order to research the power coefficient ( C _(P)) of the DHITT under different flow direction, the optimal attack flow angle of a half-impeller turbine was explored, and the fluctuation of power coefficient of the DHITT operating at yaw was analyzed based on the optimal attack flow angle. The unsteady flow of the turbine was simulated by overlapping grid technique, and the fluctuation of the turbine’s power coefficient under different flow directions was analyzed, which was verified by experiments. The results have demonstrated that the power coefficient at the optimal angle of attack is 0.53. As the yaw angle greater than 30o, the power reduction is nearly 40%, but the average efficiency loss is only 3.7% in the range of -3o to 3o.
机译:双刀片半旋转叶轮潮汐涡轮机(DHITT)是一种具有升力和电阻性能的新型垂直轴潮流涡轮机。 DHITT的功率系数受流动方向的影响。 为了在不同的流动方向下研究DHITT的功率系数(C _(P)),探讨了半叶轮涡轮机的最佳攻击流动角度,分析了在横摆时的DHIT的功率系数的波动 基于最佳攻击流量。 通过重叠电网技术模拟涡轮机的不稳定流动,并分析了涡轮机的功率系数在不同流动方向下的波动,通过实验验证。 结果表明,最佳迎角的功率系数为0.53。 随着偏航角大于30o,功率降低近于40%,但平均效率损失在-3o至3o的范围内仅为3.7%。

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