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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Velocity-intermittency structure for wake flow of the pitched single wind turbine under different inflow conditions
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Velocity-intermittency structure for wake flow of the pitched single wind turbine under different inflow conditions

机译:APS-APS流体动力学分部第70届年会-事件-变桨单风轮机在不同入流条件下的尾流的速度-间歇结构

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摘要

The velocity-intermittency quadrant method is used to characterize the flow structure of the wake flow in the boundary layer of a wind turbine array. Multifractal framework presents the intermittency as a pointwise H?lder exponent.? A 3x3 wind turbine array tested experimentally provided a velocity signal at a 21x9 downstream location, measured via hot-wire anemometry. The results show a negative correlation between the velocity and the intermittency at the hub height and bottom tip, whereas the top tip regions show a positive correlation. Sweep and ejection based on the velocity and intermittency are dominant downstream from the rotor. The pointwise results reflect large-scale organization of the flow and velocity-intermittency events corresponding to a foreshortened recirculation region near the hub height and the bottom tip.
机译:速度-断续象限方法用于表征风轮机阵列边界层中尾流的流动结构。多重分形框架将间断性表示为点状H?lder指数。经过实验测试的3x3风力涡轮机阵列通过热线风速仪在21x9下游位置提供了速度信号。结果表明,速度与轮毂高度和底部尖端的间歇性之间呈负相关,而顶部尖端区域则呈正相关。基于速度和间歇性的扫掠和弹射在转子的下游占主导地位。逐点结果反映了流量和速度间歇事件的大规模组织,这些事件与轮毂高度和底部尖端附近缩短的再循环区域相对应。

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