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Experimental study of coherent flow structures past a wall-mounted square cylinder

机译:壁挂式方形圆柱体相干流动结构的实验研究

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In high flow velocity areas like those suitable for tidal applications, turbulence intensity is high and flow variations may have a major impact on tidal turbines behaviour. Large boils that can be observed at the sea surface are emitted from the sea floor and may interact with the tidal turbines. These boils have then to be characterized. The Reynolds number, based on the rugosity height and the mean flow velocity, is rather high in this context: R-e = 2.5 x 10(7). For that purpose, experiments are carried out in a flume tank with R-e as high as achievable in Froude similitude (in the tank: R-e = 2.5 x 10(5) and F-r = 0.23) in order to study coherent flow structures emitted behind seabed obstacles. The obstacle is here a canonical square wall-mounted cylinder chosen to be representative of specific in-situ bathymetric variations. Using PIV and LDV measurements, the flow past the cylinder is investigated. Using a POD filter, large coherent structures are identified and their trajectories are analysed. By means of a Lamb-Oseen profile approximation, properties of these structures are determined. The formation mechanism of such structures is discussed in this paper and their behaviour is characterized. It is assumed that vortices periodically shed from the obstacle interact and generate hairpin structures.
机译:在适合于潮汐应用的高流速区域,湍流强度很高,流量变化可能会对潮汐涡轮机的性能产生重大影响。在海面可以观察到的大沸腾从海底发出,并可能与潮汐涡轮机相互作用。然后必须对这些沸腾进行表征。在这种情况下,基于褶皱高度和平均流速的雷诺数相当高:R-e = 2.5 x 10(7)。为此,在水槽储罐中进行实验,其Re可以达到Froude相似度(在储罐中:Re = 2.5 x 10(5)和Fr = 0.23),以便研究在海底障碍物后面散发的相干流动结构。这里的障碍是一个标准的方形壁挂式圆柱体,被选择来代表特定的原地测深变化。使用PIV和LDV测量,对通过气缸的流量进行了研究。使用POD滤波器,可以识别大型相干结构,并分析其轨迹。通过Lamb-Oseen轮廓近似,确定这些结构的性质。本文讨论了这种结构的形成机理,并对其行为进行了表征。假定周期性地从障碍物喷出的涡流相互作用并产生发夹结构。

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