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Flow development upstream of a fence

机译:围栏上游的流动发展

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The effect of Reynolds number on the flow development upstream of a rigid, non-porous, static fence is investigated experimentally. The flow field is measured using time-resolved, two-component particle image ve-locimetry at Reynolds numbers based on fence height of 18000, 36000, and 54000. The results show that a laminar separation bubble forms upstream of the junction vortex at the base of the fence. The mean extent of the bubble decreases with increasing Reynolds number, with mean separation moving downstream and mean re-attachment moving upstream. In the aft portion of the bubble, shear layer vortices form and are shed at scaled frequencies and wavelengths that are comparable to laminar separation bubble shedding in low Reynolds number airfoils and flat plates with an imposed adverse pressure gradient. The strong periodicity of the associated coherent structures and the proximity of shear layer roll-up relative to the fence should be taken into consideration in the relevant designs due to potential implications to structural loading. A simple flow separation prediction model combining inviscid fence flow solution with Thwaites' method is introduced and shows good agreement with the experimental results for the Reynolds number range considered.
机译:实验研究了雷诺数对刚性,无孔,静态围栏上游的流动开发的影响。使用时间分辨的双组分粒子图像Ve-locimetry基于围栏高度为18000,36000和54000的雷诺数测量流场。结果表明,层间分离气泡在基座的结涡的上游形成篱笆。气泡的平均程度随着雷诺数的增加而降低,平均分离移动下游,平均重新附着在上游移动。在气泡的后部,剪切层涡流形式并在缩放频率和波长下脱落,与具有施加的不利压力梯度的低雷诺数翼型和平板相当的波长。由于对结构负荷的潜在影响,应考虑相关的设计相对于围栏的相关相干结构的强周期性和相对于围栏的剪切层的邻近。介绍了一种简单的流动分离预测模型,与遗传座的方法相结合,并与考虑的雷诺数范围的实验结果表明了良好的一致性。

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