670
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

Direct numerical simulation of a separated channel flow with a smooth profile

, &
Article: N1 | Published online: 21 Jan 2008

References

  • Aubertine , C. D. and Eaton , J. K. 2005 . Turbulence development in a non-equilibrium turbulent boundary layer with mild adverse pressure gradient . J. Fluid Mech. , 532 : 345 – 364 .
  • Bernard , A. 2003 . Decelerating boundary layer: A new scaling and mixing length model . AIAA J. , 41 ( 2 ) : 248 – 255 .
  • Chong , M. S. 1998 . Turbulence structures of wall-bounded shear flows found using DNS data . J. Fluid. Mech. , 357 : 225 – 247 .
  • Dengel , P. and Fernholz , H. H. 1990 . An experimental investigation of an incompressible turbulent boundary layer in the vicinity of separation . J. Fluid Mech. , 212 : 615 – 636 .
  • Hugues , S. and Randriamampianina , A. 1998 . An improved projection scheme applied to pseudospectral methods for the incompressible Navier–Stokes equations . Int. J. Number. Methods Fluids , 28 : 501 – 521 .
  • Karniadakis , G. E. , Israeli , M. and Orszag , S. A. 1991 . High-order splitting methods for the incompressible Navier–Stokes equations . J. Comp. Phys. , 97 : 414 – 443 .
  • Kim , J. and Moin , P. 1985 . Application of a fractional-step method to incompressible Navier–Stokes equations . J. Comput. Phys. , 59 : 308 – 323 .
  • Kostas , D. , Foucaut , J. M. and Stanislas , M. Application of double SPIV on the near wall turbulence structure of an adverse pressure gradient turbulent boundary layer . In 6th Int. Symp. on Particle Image Velocimetry . pp. 21 – 41 .
  • Krogstad , P.-Å and Skåre , P. E. 1995 . Influence of the strong adverse pressure gradient on the turbulent structure in a boundary layer . Phys. Fluids , 7 ( 8 ) : 2014 – 2024 .
  • Lin , J. 2006 . Etude détailée des structure cohérentes de la zone tampon de la turbulence de paroi à l'aide de données de PIV stéréoscopique , Ph.D. thesis University of Lille .
  • Marquillie , M. and Ehrenstein , U. 2002 . Numerical simulation of separating boundary-layer flow . Comput. Fluid , 31 : 683 – 693 .
  • Marquillie , M. and Ehrenstein , U. 2003 . On the onset of nonlinear oscillations in a separating boundary-layer flow . J. Fluid Mech. , 490 : 169 – 189 .
  • Moin , P. and Mahesh , K. 1998 . Direct numerical simulation: A tool in turbulence research . Annu. Rev. Fluid. Mech. , 30 : 539 – 578 .
  • Moser , R. D. , Kim , J. and Mansour , N. N. 1999 . Direct numerical simulation of turbulent channel flows up to Re τ = 590 . Phys. Fluids , 11 : 943 – 945 .
  • Na , Y. and Moin , P. 1998 . Direct numerical simulation of a separated turbulent boundary layer . J. Fluid Mech. , 374 : 379 – 405 .
  • Na , Y. and Moin , P. 1998 . The structure of wall-pressure fluctuations in turbulent boundary layers with adverse pressure gradient and separation . J. Fluid Mech. , 377 : 347 – 373 .
  • Neumann , J. and Wengle , H. 2004 . Coherent structures in controlled separated flow over sharp-edged and rounded steps . J. Fluid Mech. , 5 ( 022 ) : 1 – 24 .
  • Simpson , R. L. 1981 . A review of some phenomena in turbulent flow separation . Trans. ASME: J. Fluids Eng. , 103 : 520 – 533 .
  • Skåre , P. E. and Krogstad , P.-Å . 1994 . A turbulent boundary layer near separation . J. Fluids Mech. , 272 : 319 – 348 .
  • Skote , M. and Henningson , D. S. 2002 . Direct numerical simulation of separating turbulent boundary layers . J. Fluid Mech. , 471 : 107 – 136 .
  • Spalart , P. 1988 . Direct simulation of a turbulent boundary layer up to r θ = 1410 . J. Fluid Mech. , 187 : 61 – 99 .
  • Spalart , P. R. and Watmuff , J. H. 1993 . Experimental and numerical investigation of a turbulent boundary layer with pressure gradients . J. Fluid Mech. , 249 : 337 – 371 .
  • Webster , D. R. , Degraaf , D. B. and Eaton , J. K. 1996 . Turbulence characteristics of a boundary layer over a two-dimensional bump . J. Fluid Mech. , 320 : 53 – 69 .
  • Wu , X. A. and Squires , K. D. 1998 . Numerical investigation of the turbulent boundary layer over a bump . J. Fluid. Mech. , 362 : 229 – 271 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.