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Fractional Flow Speed-Up from Porous Windbreaks for Enhanced Wind-Turbine Power

机译:来自多孔防风的分数流量加速,用于增强风力涡轮功率

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The potential for porous windbreaks to enhance wind-turbine power production is studied using linearized theory and wind-tunnel experiments. Results suggest that windbreaks have the potential to substantially increase power production, while lowering mean shear, and leading to negligible changes in turbulence intensity. The fractional increase in turbine power output is found to vary roughly linearly with windbreak height, where a windbreak 10% the height of the turbine hub increases power by around 10%. Wind-tunnel experiments with a windbreak imposed beneath a turbulent boundary layer show the linearized predictions to be in good agreement with particle-image-velocimetry data. Power measurements from a model turbine further corroborate predictions in power increase. Moreover, the wake of the windbreak showed a significant interaction with the turbine wake, which may inform windbreak use in large wind farms. Power measurements from a second turbine downwind of the first with its own windbreak show that the net effect for multiple turbines is dependent on windbreak height.
机译:使用线性化理论和风隧道实验研究了多孔防风型以增强风力涡轮发电的潜力。结果表明,挡风膜有可能大大提高电力生产,同时降低平均剪切,并导致湍流强度的可忽略变化。发现涡轮功率输出的分数增加与防风高度大致线性增加,其中防风机10%涡轮机轮毂的高度提高约10%。风隧道实验具有湍流边界层施加的挡风膜,显示与粒子图像速度数据吻合良好的线性化预测。模型涡轮机的功率测量进一步证实了电力增加的预测。此外,防风尾随着涡轮机尾部的显着互动,可能会在大型风电场内提供防风。第一次第二涡轮机的电力测量与其自身的挡风洞显示,多个涡轮机的净效果取决于防风高度。

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