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Analysis on the influence of rotational speed to aerodynamic performance of vertical axis wind turbine

机译:旋转速度对垂直轴风风力涡轮机气动性能的影响分析

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A two dimensional vertical axis wind turbine's model was established in this paper, and two dimensional unsteady incompressible N-S equations and Realizable k — ε turbulence model were solved with software FLUENT. SIMPLC algorithm was applied, combined with the sliding grid technology; the influence of rotational speed to the flow structure of vertical axis wind turbine was discussed. The results showed that, the rotation of wind turbine had significant influence on wake, and higher the rotational speed, the greater reduction of the wake velocity. The wake velocity restored gradually away from the rotational part. There was much larger turbulent kinetic energy near the tail of the wind turbine's blade. The value of turbulent kinetic energy reduced gradually away from the rotational part, and the flow restored the stratospheric state gradually. With the increase of wind turbine's rotational speed, the value of turbulent kinetic energy in calculation domain increased too. The results showed that the flow structure of vertical axis wind turbine's rotational process could be revealed effectively by numerical simulation, provided theoretical reference for the engineering design of the vertical axis wind turbine.
机译:在本文中建立了二维垂直轴风力涡轮机的模型,用软件流畅,解决了二维不稳定的不可压缩的N-S型方程和可实现的K - ε湍流模型。应用了SIMPLC算法,与滑动网格技术相结合;讨论了旋转速度对垂直轴风力涡轮机的流动结构的影响。结果表明,风力涡轮机的旋转对唤醒产生了显着的影响,并且旋转速度越高,唤醒速度的减小。唤醒速度恢复逐渐远离旋转部件。在风力涡轮机刀片的尾巴附近存在较大的湍流动能。湍流动能的价值从旋转部分逐渐减小,并且流动逐渐恢复了平流层状态。随着风力涡轮机的转速的增加,计算领域的湍流动能的值也增加。结果表明,通过数值模拟可以有效地揭示垂直轴风力涡轮机的旋转过程的流动结构,为垂直轴风力涡轮机的工程设计提供了理论参考。

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