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Experimental Investigation on Turbulent Structure of Drag Reducing Channel Flow with Blowing Polymer Solution from the Wall

机译:壁面吹聚合物溶液减阻降低通道流动的湍流结构实验研究。

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Turbulent drag reducing flow with blowing polymer solution from the channel wall was investigated experimentally using particle image velocimetry (PIV). Experiments were carried out with varying conditions of blowing polymer solution (e.g. weight concentration of polymer solution). Reynolds number based on the channel height and mean velocity was set to 20000 and 40000. When the polymer solution was blown from the channel wall, streamwise velocity fluctuation little increased, but wall-normal velocity fluctuation, Reynolds shear stress and correlation coefficient decreased significantly only near the blower wall. This behavior corresponds to the decrease of the ejection and sweep in the near-wall region observed by the investigation of instantaneous velocity map. On the contrary, this characteristic behavior was not observed at a position away from the blower wall (y/(H/2) > 0.4) and the scatter plot was almost the same as that of the water flow in this region. These results suggest that there are two regions in the drag reducing flow with blowing polymer solution from the wall; one is a non-Newtonian region which exists near the blower wall, and the other is a Newtonian region at a distance from the wall. The non-Newtonian region plays a key role in the drag reduction by the blowing polymer solution.
机译:使用颗粒图像测速仪(PIV),对从通道壁吹入聚合物溶液的湍流减阻流进行了实验研究。在吹塑聚合物溶液的不同条件下进行实验(例如聚合物溶液的重量浓度)。基于通道高度和平均速度的雷诺数设定为20000和40000。当从通道壁上吹出聚合物溶液时,沿流速度波动几乎没有增加,但壁面法向速度波动,雷诺剪切应力和相关系数仅显着降低在鼓风机壁附近。此行为对应于通过瞬时速度图的研究观察到的近壁区域中喷射和扫掠的减少。相反,在远离鼓风机壁的位置(y /(H / 2)> 0.4)未观察到该特征行为,并且散点图与该区域中水流的散点图几乎相同。这些结果表明在减阻流中有两个区域是从壁上吹出聚合物溶液。一个是鼓风机壁附近的非牛顿区域,另一个是离壁较远的牛顿区域。非牛顿区在吹塑聚合物溶液的减阻作用中起关键作用。

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