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Upstream roughness and Reynolds number effects on turbulent flow structure over forward facing step

机译:上游粗糙度和雷诺数对前向台阶上湍流结构的影响

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This paper presents results of experiments conducted to investigate the effects of Reynolds number and upstream wall roughness on the turbulence structure in the recirculation and recovery regions of a smooth forward facing step. A reference smooth upstream wall and a rough upstream wall made from sand gains were studied. For the smooth upstream wall, experiments were conducted at Reynolds number based on the freestream velocity and step height (h), Re-h = 4940, 8400 and 8650. The rough wall experiments was performed at Re-h = 5100, 8200 and 8600 to closely match the corresponding Reh experiment over the smooth wall. The reattachment lengths in the smooth wall experiments were L-r/h approximate to 2.2, but upstream roughness significantly reduced these values to L-r/h approximate to 1.3. The integral scales within the recirculation bubbles were independent of upstream roughness and Reynolds number; however, upstream roughness significantly increased the spatial coherence and integral scales outside the recirculation bubbles and in the recovery region. Irrespective of the upstream wall condition, the redeveloping boundary layer recovered at 25h from reattachment. (C) 2015 Elsevier Inc. All rights reserved.
机译:本文介绍了实验结果,以研究雷诺数和上游壁面粗糙度对平稳向前步骤的再循环和恢复区域中湍流结构的影响。研究了参考平整的上游墙和粗糙的上游墙,这些墙由增砂制成。对于光滑的上游壁,根据自由流速度和步高(h)以雷诺数进行实验,Re-h = 4940、8400和8650。粗糙壁实验在Re-h = 5100、8200和8600进行在光滑的墙壁上紧密匹配相应的Reh实验。光滑壁实验中的重装长度为L-r / h约2.2,但上游粗糙度将这些值显着降低为L-r / h约1.3。再循环气泡内的积分标度与上游粗糙度和雷诺数无关;然而,上游粗糙度明显增加了再循环气泡外部和恢复区域的空间相干性和整体尺度。不论上游墙体状况如何,重建边界层均在重新附着后25h时恢复。 (C)2015 Elsevier Inc.保留所有权利。

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