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Turbulent boundary layers over smooth and rough forward-facing steps

机译:平滑和粗糙的前向台阶上的湍流边界层

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摘要

The present work explores the impact of the roughness on the turbulent boundary layers over forward-facing steps. The roughness topography on the top surface of the rough step is replicated from a realistic turbine blade and embodies three-dimensional and highly irregular topographical features. High spatial resolution particle image velocimetry measurements are performed in the x-y planes at two different spanwise positions in turbulent boundary layers over both smooth and rough steps of the same mean heights at Re_h=3450 and δ/h=8. Comparison of mean flow structures, Reynolds normal and shear stresses, quadrant analysis of instantaneous shear stress contributing events, and average spanwise vorticity reveals that the separated flow after the step is weakened by the surface roughness on top of the step while the flow ahead of the step is invariant to the surface conditions. The characteristics of the coherent spanwise vortices such as the numbers, size, and circulation distributions are also found to be significantly modified by the roughness topography.
机译:本工作探讨了在向前的台阶上粗糙度对湍流边界层的影响。粗糙步骤的顶表面上的粗糙地形是从逼真的涡轮叶片复制而来,体现了三维和高度不规则的地形特征。在Re_h = 3450和δ/ h = 8的相同平均高度的平滑和粗糙台阶上,在湍流边界层的两个不同展向位置的x-y平面中执行高空间分辨率粒子图像测速仪测量。比较平均流量结构,雷诺法向应力和切应力,瞬时切应力贡献事件的象限分析以及平均展向涡度,可以看出,该步骤后的分离流被该步骤顶部的表面粗糙度所削弱,而该步骤之前的流则被削弱。步骤是不变的表面条件。还发现粗糙度分布极大地改变了连贯的展向涡旋的数量,大小和循环分布等特性。

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