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首页> 外文期刊>Journal of Fluid Mechanics >Linear stability analysis of wind turbine wakes performed on wind tunnel measurements
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Linear stability analysis of wind turbine wakes performed on wind tunnel measurements

机译:在风洞测量中进行的风机尾流的线性稳定性分析

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摘要

Wind tunnel measurements were performed for the wake produced by a three-bladed wind turbine immersed in uniform flow. These tests show the presence of a vorticity structure in the near-wake region mainly oriented along the streamwise direction, which is denoted as the hub vortex. The hub vortex is characterized by oscillations with frequencies lower than that connected to the rotational velocity of the rotor, which previous works have ascribed to wake meandering. This phenomenon consists of; transversal oscillations of the wind turbine wake, which might be excited by the vortex shedding from the rotor disc acting as a bluff body. In this work, temporal and spatial linear stability analyses of a wind turbine, wake are performed on a base flow obtained with time-averaged wind tunnel velocity measurements. This study shows that the low-frequency spectral component detected experimentally matches the most amplified frequency of the counter-winding single-helix mode downstream of the wind turbine. Then, simultaneous hot-wire measurements confirm the presence of a helicoidal unstable mode of the hub vortex with a streamwise wavenumber roughly equal to that predicted from the linear stability analysis.
机译:对沉浸在均匀流动中的三叶风力涡轮机产生的尾流进行风洞测量。这些测试表明在主要沿流向定向的近苏醒区域中存在涡旋结构,这被称为轮毂涡旋。轮毂涡流的特点是振荡频率低于与转子旋转速度相关的频率,以前的工作已将这种振荡归因于蜿蜒曲折。这种现象包括:风力涡轮机尾流的横向振荡,可能会被用作钝体的转子盘上产生的涡旋所激发。在这项工作中,对通过时间平均风洞速度测量获得的基流执行风力涡轮机尾流的时间和空间线性稳定性分析。这项研究表明,实验检测到的低频频谱分量与风力涡轮机下游的反向缠绕单螺旋模式的最大放大频率相匹配。然后,同时进行的热线测量确认了轮毂涡旋的螺旋不稳定模式的存在,其沿流方向的波数大致等于根据线性稳定性分析预测的波数。

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