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Original Articles

Estimation and prediction of the roughness function on realistic surfaces

&
Pages 350-365 | Received 25 Feb 2014, Accepted 19 Mar 2014, Published online: 29 Apr 2014

References

  • J.P. Bons, R.P. Taylor, S.T. McClain, and R.B. Rivir, The many faces of turbine surface roughness, J. Turbomach. 123 (2001), pp. 739–748.
  • M.R. Raupach, R.A. Antonia, and S. Rajagopalan, Rough-wall boundary layers, Appl. Mech. Rev. 44 (1991), pp. 1–25.
  • J. Jiménez, Turbulent flows over rough walls, Annu. Rev. Fluid Mech. 36 (2004), pp. 173–196.
  • J.P. Bons, St and Cf augmentation for real turbine roughness with elevated freestream turbulence, J. Turbomach. 124 (2002), pp. 632–644.
  • Y. Wu and K.T. Christensen, Reynolds-stress enhancement associated with a short fetch of roughness in wall turbulence, AIAA J. 44 (2006), pp. 3098–3106.
  • K.A. Flack and M.P. Schultz, Review of hydraulic roughness scales in the fully rough regime, J. Fluids Eng. 132 (2010), pp. 041203-1–041203-10.
  • Y. Wu and K.T. Christensen, Outer-layer similarity in the presence of a practical rough-wall topography, Phys. Fluids 19 (2007), pp. 085108-1–085108-15.
  • Y. Wu and K.T. Christensen, Spatial structure of a turbulent boundary layer with irregular surface roughness, J. Fluid Mech. 655 (2010), pp. 380–418.
  • B.E. Johnson and K.T. Christensen, Turbulent flow over low-order models of highly irregular surface roughness, AIAA J. 47 (2009), pp. 1288–1299.
  • R. Mejia-Alvarez and K.T. Christensen, Low-order representations of irregular surface roughness and their impact on a turbulent boundary layer, Phys. Fluids 22 (2010), pp. 015106-1–015106-20.
  • A.M. Licari and K.T. Christensen, Modeling cumulative surface damage and assessing its impact on wall turbulence, AIAA J. 49 (2011), pp. 2305–2320.
  • W. Anderson and C. Meneveau, Dynamic roughness model for large-eddy simulation of turbulent flow over multiscale, fractal-like rough surfaces, J. Fluid Mech. 679 (2011), pp. 288–314.
  • A. Busse, C.J. Tyson, and N.D. Sandham, Direct numerical simulation of turbulent channel flow over engineering rough surfaces, Turbulent shear flow phenomena 8, Poitiers, France, 2013.
  • J.P. Bons, S.T. McClain, Z.J. Wang, X. Chi, and T.I. Shih, A comparison of approximate versus exact geometrical representations of roughness for CFD calculations of Cf and St, J. Turbomach. 130 (2008), pp. 021024-1–021024-10.
  • J. Nikuradse, Laws of flow in rough pipes, NACA Technical Memorandum 1292 (1933).
  • J.P. Bons, A review of surface roughness effects in gas turbines, J. Turbomach. 132 (2010), pp. 021004-1–021004-16.
  • A. Sigal and J.E. Damberg, New correlation of roughness density effects on the turbulent boundary layer, AIAA J. 28 (1990), pp. 554–556.
  • J.A. van Rij, B.J. Belnap, and P.M. Ligrani, Analysis and experiments on three-dimensional, irregular surface roughness, J. Fluids Eng. 124 (2002), pp. 671–677.
  • F.A. Dvorak, Calculation of turbulent boundary layers on rough surfaces in pressure gradient, AIAA J. 7 (1969), pp. 1752–1759.
  • R.L. Simpson, A generalized correlation of roughness density effects on the turbulent boundary layer, AIAA J. 11 (1973), pp. 242–244.
  • J.P. Bons, A critical assessment of Reynolds analogy for turbine flows, J. Heat Transfer 127 (2005), pp. 472–485.
  • M.P. Schultz and K.A. Flack, Turbulent boundary layers on a systematically varied rough wall, Phys. Fluids 21 (2009), pp. 015104-1–015104-9.
  • E. Napoli, V. Armenio, and M. D. Marchis, The effect of the slope of irregularly distributed roughness elements on turbulent wall-bounded flows, J. Fluid Mech. 613 (2008), pp. 385–394.
  • C. Meneveau, T.S. Lund, and W.H. Cabot, A Lagrangian dynamic subgrid-scale model of turbulence, J. Fluid Mech. 319 (1996), pp. 353–385.
  • A. Keating, U. Piomelli, K. Bremhorst, and S. Nešić, Large-eddy simulation of heat transfer downstream of a backward-facing step, J. Turbul. 5 (2004), pp. 20–1—27.
  • J. Yuan and U. Piomelli, Numerical simulations of sink-flow boundary layers over rough surfaces, Phys. Fluids 26 (2014), pp. 015113-1–015113-28.
  • A. Scotti, Direct numerical simulation of turbulent channel flows with boundary roughened with virtual sandpaper, Phys. Fluids 18 (2006), pp. 031701-1–031701-4.
  • R.J. Volino, M.P. Schultz, and K.A. Flack, Turbulence structure in a boundary layer with two-dimensional roughness, J. Fluid Mech. 635 (2009), pp. 75–101.
  • D.G. Bogard and D.L. Schmidt, Characterization and laboratory simulation of turbine airfoil surface roughness and associated heat transfer, J. Turbomach. 120 (1998), pp. 337–342.
  • R.B. Dean, Reynolds number dependence of skin friction and other bulk flow variables in two-dimensional rectangular duct flow, ASME J. Fluids Eng. 100 (1978), pp. 215–223.
  • M.P. Schultz and K.A. Flack, Reynolds-number scaling of turbulent channel flow, Phys. Fluids 25 (2013), pp. 025104-1–025104-13.
  • L.I. Langelandsvik, G.J. Kunkel, and A.J. Smits, Flow in a commercial steel pipe, J. Fluid Mech. 595 (2008), pp. 323–339.

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