Aerodynamic Performance and Wake Characteristics of a Wind Turbine Model Subjected to Surge and Sway Motions

Haoran Meng, Hao Su, Jia Guo, T. Qu, Li-ping Lei
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Abstract

A wind-tunnel experimental study was performed to investigate the impact of the surge and sway motions of a wind turbine model on the power output, rotor thrust and wake characteristics. A wind turbine model was mounted on a translation platform to simulate the surge and sway motions under given amplitude and frequency. The power output and rotor thrust of the turbine model subjected to surge and sway motions were measured by using a DC variable electronic load and a six-component force sensor, respectively. For comparison, these measurements were also performed in a bottom-fixed wind turbine. The results show that the mean power output and mean rotor thrust of the turbine model under surge and sway motions are almost the same as those of the bottom-fixed turbine. However, the thrust fluctuation amplitude of the turbine model under surge motion is significantly higher than those of the turbine model under sway motion and the bottom-fixed turbine. In addition, the wake characteristics of the turbine model were also investigated by using a particle image velocimetry system. The results show that the surge and sway motions have slight effect on the near and intermediate wake of the turbine model in the horizontal plane at the rotor hub height.
风轮模型在浪涌和摇摆运动下的气动性能和尾迹特性
通过风洞试验研究了风力机模型的喘振和摇摆运动对输出功率、转子推力和尾迹特性的影响。将风力机模型安装在平移平台上,模拟了给定振幅和频率下的浪涌和摇摆运动。采用直流可变电子负载和六分量力传感器分别测量了水轮机模型在喘振和摇摆运动下的输出功率和转子推力。为了比较,这些测量也在底部固定的风力涡轮机中进行。结果表明,在喘振和摇摆运动下,涡轮模型的平均输出功率和平均转子推力与底部固定涡轮模型基本相同。但喘振运动涡轮模型的推力波动幅值明显高于摇摆运动涡轮模型和底部固定涡轮模型。此外,还利用粒子图像测速系统对涡轮模型的尾迹特性进行了研究。结果表明:水轮机模型在转子轮毂高度水平面上的近、中尾迹受到浪涌和摇摆运动的影响较小;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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