Wake characteristics of a model wind turbine and an actuator disk model

J. Miau, Sin An Lin, Jyun Hao Fong, Chung Chuan Lin, T. Leu, Ta-Chung Wang, Chien-Chou Tseng
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Abstract

Wake characteristics of a model wind turbine and a porous disk respectively immersed in a uniform free stream and turbulent boundary layers were studied experimentally. Under the latter experimental condition, two boundary layers of different thickness, about 5.5 and 1.5 D, respectively, where D denotes the diameter of the model wind turbine, were considered. Based on the hot-wire velocity measurements in the near wake region, it is found that irrespective of the models the wake flow development in the thicker boundary layer appear to be dominated by the large scale eddies in the boundary layer, whereas in the thinner boundary layer, the wake flow development relies on the turbulent eddies generated by the model, similar to the situation that the model is immersed in a uniform free stream.
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风力机模型及作动盘模型尾迹特性分析
对模型风力机和多孔盘分别浸入均匀自由流和湍流边界层中的尾迹特性进行了实验研究。在后一种实验条件下,考虑两个不同厚度的边界层,分别约为5.5 D和1.5 D,其中D为模型风力机直径。根据近尾迹区热线速度测量发现,无论哪种模式,较厚边界层的尾流发展似乎都是由边界层的大尺度涡流主导的,而较薄边界层的尾流发展则依赖于模型产生的湍流涡流,类似于模型浸没在均匀自由流中的情况。
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