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Analysis on the aerodynamic performance of vertical axis wind turbine subjected to the change of wind velocity

机译:风速变化垂直轴风风力涡轮机的空气动力学性能分析

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Reynolds averaged Navier-Stokes equations and Realizable k — S model were used in this paper, and the two dimensional unsteady flow field of the vertical axis wind turbine was simulated numerically at different wind velocity. The calculation results showed that the velocity in the region of wind turbine's rotation was much larger than the air flow of the upstream. The length of the wind turbine's downstream wake dispersion region was increased with the increase of the wind velocity. There is a much larger value of the eddy in the rear region of the wind turbine's rotational blades. And eddy existed in the downstream region of the wind turbine, and the larger velocity of cross flow, the larger value of the downstream flow's eddy. When the rotational speed was constant, with the increase in wind velocity, the variation of the wind turbine's total torque coefficient tended to smooth. The calculation results pointed out the direction for the follow-up study.
机译:在本文中使用了Reynolds平均和可实现的K-S模型,并且在不同的风速下数值模拟了垂直轴风力涡轮机的二维不稳定流场。计算结果表明,风力涡轮机旋转区域的速度远大于上游的空气流。随着风速的增加,风力涡轮机的下游唤醒分散区的长度增加。在风力涡轮机的旋转叶片的后部区域中存在较大的涡流值。并且涡流存在于风力涡轮机的下游区域,以及较大的交叉流速,下游流动涡流的较大值。随着旋转速度恒定的,随着风速的增加,风力涡轮机的总扭矩系数的变化倾向于光滑。计算结果指出后续研究的方向。

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