Title of article :
Turbulent channel flow with 2D wedges of random height on one wall
Author/Authors :
Bailon-Cuba، نويسنده , , Jorge and Leonardi، نويسنده , , Stefano and Castillo، نويسنده , , Luciano، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Direct numerical simulations (DNS) of a turbulent channel flow with 2D wedges of random height on the bottom wall have been performed. In addition, two other simulations have been carried out to assess the effect of the geometry on the overlying flow. In the first simulation, the four smallest elements were removed while in the other, a uniform distribution of wedges with the same area was used. Two Reynolds numbers were studied, Re b = 2500 and Re b = 5000 which correspond in case of smooth walls to Re τ = 180 and 300, respectively. Roughness on the wall induces separated regions, the reattachment occurring on the walls of the wedges or on the bottom wall. The pressure gradients on the walls increase the ejections and inrushes towards the wall. As a consequence the flow is more isotropic. The mechanism inducing an improved isotropy has been explained in term of the spectra and budgets of Reynolds stress. The comparison of the 3 surfaces has shown that near the wall, the uniformly distributed roughness represents only a poor approximation of the surface with wedges of random height. The Reynolds stresses, pressure distribution and spectra on the modified wall agree well with those on the random surface. Energy spectra show the pitch to height ratio of the largest elements to be the more appropriate geometrical parameter to describe the geometry.
Keywords :
Roughness , Random , DNS , Turbulence
Journal title :
International Journal of Heat and Fluid Flow
Journal title :
International Journal of Heat and Fluid Flow