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Effects of upstream roughness and Reynolds number on separated and reattached turbulent flow
Authors:Ebenezer Ekow Essel  Ali Nematollahi  Eric William Thacher
Institution:Department of Mechanical Engineering, University of Manitoba, Winnipeg, Canada
Abstract:This paper presents experimental investigation of upstream roughness and Reynolds number effects on the recirculation region over a smooth forward facing step. The upstream rough wall was produced from 1.5 mm sand grains and the Reynolds number based on step height, Reh, was varied from 2040 to 9130 for both the upstream smooth and rough walls. For the smooth wall, the reattachment length increased monotonically with Reh to an asymptotic value of 2.2 step heights for Reh ≥ 6380. Upstream roughness reduced the reattachment length by 44% because of larger momentum deficit and higher turbulence level in the rough wall boundary layer. The mean velocities and Reynolds stresses were also reduced by roughness. The Reynolds shear stress and production of turbulent kinetic energy showed high negative values at the leading edge of the step indicating counter-gradient diffusion. The implications of these results for standard eddy viscosity models are discussed.
Keywords:separated and reattached flow  forward facing step  wall roughness  Reynolds number  particle image velocimetry
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