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Original Articles

Numerical simulation of flow behind active vortex generators with direct forcing immersed boundary method

Pages 49-60 | Received 15 Aug 2006, Accepted 28 Feb 2007, Published online: 25 May 2007

References

  • Armaly , B.F. , Durst , F. , Pereira , J.C.F. and Schonung , B. 1983 . Experimental and theoretical investigation of backward-facing step flow . J. Fluid Mech. , 127 : 473 – 496 .
  • Arthurs , K.M. , Moore , L.C. , Peskin , C.S. and Pitman , F.B. 1998 . Modeling arteriolar flow and mass transport using the immersed boundary method . J. Comput. Phys. , 147 : 402
  • Coutanceau , M. and Bouard , R. 1977 . Experimental determination of the main features of the viscous flow in a wake of a circular cylinder in uniform translation. Part 1. Steady flow . J. Fluid Mech. , 79 : 231 – 256 .
  • Fadlun , E.A. , Verzicco , R. , Orlandi , P. and Mohd-Yusof , J. 2000 . Combined immersed-boundary finite-difference methods for three-dimensional complex flow simulations . J. Comput. Phys. , 161 : 35 – 60 .
  • Fornberg , B. 1980 . A numerical study of steady viscous flow past a circular cylinder . J. Fluid Mech. , 98 : 819 – 855 .
  • Gaitonde , D.V. and Visbal , M.R. 1999 . Futher development of a Navier–Stokes solution procedure based on higher-order formulas . AIAA Paper , : 0557
  • Gilmanov , A. and Sotiropoulos , F. 2005 . A hybrid Cartesian/immersed boundary method for simulating flows with 3D, geometrically complex, moving bodies . J. Comput. Phys. , 207 : 457 – 492 .
  • Goldstein , D. , Handler , R. and Sirovich , L. 1995 . Direct numerical simulation of the turbulent flow over a modeled riblet covered surface . J. Fluid Mech. , 302 : 333
  • Grigoriadis , D.G.E. , Bartzis , J.G. and Goulas , A. 2003 . LES of the flow past a rectangular cylinder using the immersed boundary concept . Int. J. Numer. Meth. Fluids , 41 ( 6 ) : 615 – 632 .
  • Hutchines , N. and Choi , K-S. 2001 . Experimental investigation of turbulence suppression by the imposition of a large-scale vortical control flow . AIAA Paper , : 2775
  • Jiang, L., Shan, H. and Liu, C., Direct numerical simulation of boundary-layer receptivity for subsonic flow around airfoil. Recent Advances in DNS and LES, Proceedings of the Second AFOSR (Air Force Office of Scientific Research) International Conference, Rutgers, New Jersey, June 7–9, 1999a
  • Jiang, L., Shan, H. and Liu, C., Nonreflecting boundary conditions for DNS in curvilinear coordinates. Recent Advances in DNS and LES, Proceedings of the Second AFOSR (Air Force Office of Scientific Research) International Conference, Rutgers, New Jersey, June 7–9, 1999b
  • Linnick , M. and Fasel , H. 2003 . A high-order immersed boundary method for unsteady incompressible flow calculations . AIAA Paper , : 1124
  • Mittal , R. and Iaccarino , G. 2005 . Immersed boundary methods . Annu. Rev. Fluid Mech. , 37 : 239 – 261 .
  • Osborn , R.F. , Kota , S. , Geister , D. , Lee , M. and Tilmann , C. 2001 . Active flow control using high frequency compliant structures . AIAA Paper , : 4144
  • Peskin , C.S. 1972 . Flow patters around heart valves: a numerical method . J. Comput. Phys. , 10 : 252
  • Saiki , E.M. and Biringen , S. 1997 . Spatial numerical simulation of boundary layer transition: effects of a spherical particle . J. Fluid Mech. , 345 : 133
  • Schoppa , W. and Hussain , F. 1997 . Effective drag reduction by large-scale manipulation of streamwise vortices in near-wall turbulence . AIAA Paper , : 1794
  • Schubauer , G.B. and Spangenberg , W.G. 1960 . Forced mixing in boundary layers . J. Fluid Mech. , 8 : 10 – 32 .
  • Shizawa , T. and Mizusaki , Y. 2004 . Response of time-depended flowfield structure behind an active vortex generators pair . AIAA Paper , : 2427
  • Taylor, H.D., The elimination of diffuser separation by vortex generators. United Aircraft Corporation Report No. R-4012-3, 1947
  • Von Terzi , D.A. , Linnick , M.N. , Seidel , J. and Fasel , H.F. 2001 . Immersed boundary techniques for high-order finite difference methods . AIAA Paper , : 2918
  • Yoon , S. and Kwak , D. 1992 . Implicit Navier–Stokes solver for three-dimensional compressible flows . AIAA Journal , 30 : 2653 – 2659 .

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