132
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Large-eddy simulation of turbulent mixed convection in a vertical annulus with a rotating inner cylinder

&
Article: N5 | Published online: 02 Nov 2009

References

  • Kaye , J. and Elgar , E. C. 1958 . Modes of adiabatic and diabatic fluid flow in an annulus with an inner rotating cylinder . Transactions of the ASME: Journal of Heat Transfer , 80 : 753 – 765 .
  • Kuzay , T. M. and Scott , C. J. 1977 . Turbulent heat transfer studies in annulus with inner cylinder rotation . Transactions of the ASME: Journal of Heat Transfer , 99 : 12 – 19 .
  • Torii , S. and Yang , W. J. 1994 . Numerical study on turbulent flow and heat transfer in circular Couette flows . Numerical Heat Transfer, Part A (Applications) , 26 : 321 – 336 .
  • Rothe , T. and Pfitzer , H. 1997 . The influence of rotation on turbulent flow and heat transfer in an annulus between independently rotating tubes . Heat and Mass Transfer , 32 : 353 – 364 .
  • Torii , S. and Yang , W. J. 2003 . Swirling effect on thermal-fluid transport phenomena in a strongly heated concentric annulus . Transactions of the ASME: Journal of Heat Transfer , 125 : 604 – 611 .
  • Chung , S. Y. and Sung , H. J. 2005 . Large-eddy simulation of turbulent flow in a concentric annulus with rotation of an inner cylinder . International Journal of Heat and Fluid Flow , 26 : 191 – 203 .
  • Lee , J. S. , Xu , X. F. and Pletcher , R. H. 2005 . Effects of wall rotation on heat transfer to annular turbulent flow: Outer wall rotating . Transactions of the ASME: Journal of Heat Transfer , 127 : 830 – 838 .
  • Petukhov , B. S. and Polyakov , A. F. 1988 . Heat Transfer in Turbulent Mixed Convection , New York : Hemisphere .
  • Jackson , J. D. , Cotton , M. A. and Axcell , B. P. 1989 . Studies of mixed convection in vertical tubes . International Journal of Heat and Fluid Flow , 10 : 2 – 15 .
  • Morinishi , Y. , Vasilyev , O. V. and Ogi , T. 2004 . Fully conservative finite difference scheme in cylindrical coordinates for incompressible flow simulations . Journal of Computational Physics , 197 : 686 – 710 .
  • Kasagi , N. , Tomita , Y. and Kuroda , A. 1992 . Direct numerical simulation of passive scalar field in a turbulent channel flow . Transactions of the ASME: Journal of Heat Transfer , 114 : 598 – 606 .
  • Germano , M. , Piomelli , U. , Moin , P. and Cabot , W. H. 1991 . A dynamic subgrid-scale eddy viscosity model . Physics of Fluids , A 3 : 1760 – 1765 .
  • Lilly , D. K. 1992 . A proposed modification of the Germano subgridscale closure method . Physics of Fluids , A 4 : 633 – 635 .
  • Moin , P. , Squires , K. , Cabot , W. and Lee , S. 1991 . A dynamic subgrid-scale model for compressible turbulence and scalar transport . Physics of Fluids , 3 : 2746 – 2757 .
  • Spalart , P. R. , Moser , R. D. and Rogers , M. M. 1991 . Spectral methods for the Navier–Stokes equations with one infinite and two periodic directions . Journal of Computational Physics , 96 : 297 – 324 .
  • Ghosal , S. 1996 . An analysis of numerical errors in large-eddy simulations of turbulence . Journal of Computational Physics , 125 : 187 – 206 .
  • You , J. , Yoo , J. Y. and Choi , H. 2003 . Direct numerical simulation of heated vertical air flows in fully developed turbulent mixed convection . International Journal of Heat and Mass Transfer , 46 : 1613 – 1627 .
  • Kim , W. S. , Talbot , C. , Chung , B. J. and Jackson , J. D. 2002 . Variable property mixed convection heat transfer to air flowing through vertical passage of annular cross section: part 1 . Chemical Engineering Research and Design , 80 : 239 – 245 .
  • Zarate , J. A. , Roy , R. P. and Laporta , A. 2001 . Isothermal and heated turbulent upflow in a vertical annular channel: Part II. Numerical simulations . International Journal of Heat and Mass Transfer , 44 : 1185 – 1199 .
  • Kays , W. M. 1994 . Turbulent Prandtl number-Where are we? . Transactions of the ASME: Journal of Heat Transfer , 116 : 284 – 295 .
  • Sendstad , O. and Moin , P. 1992 . The near wall mechanics of three-dimensional turbulent boundary layers , Thermosciences division, Department of Mechanical Engineering, Stanford University . Report TF-57
  • Orlandi , P. and Fatica , M. 1997 . Direct simulations of turbulent flow in a pipe rotating about its axis . Journal of Fluid Mechanics , 343 : 43 – 72 .
  • Kannepalli , C. and Piomelli , U. 2000 . Large-eddy simulation of a three-dimensional shear-driven turbulent boundary layer . Journal of Fluid Mechanics , 423 : 175 – 203 .
  • Kim , J. , Moin , P. and Moser , R. 1987 . Turbulence statistics in fully developed channel flow at low Reynolds number . Journal of Fluid Mechanics , 177 : 133 – 166 .
  • Eggels , J. G.M. , Unger , F. , Weiss , M. H. , Westerweel , J. , Adrian , R. J. , Friedrich , R. and Nieuwstadt , F. T.M. 1994 . Fully developed turbulent pipe flow: A comparison between direct numerical simulation and experiment . Journal of Fluid Mechanics , 268 : 175 – 209 .
  • Johnston , J. P. and Flack , K. A. 1996 . Review–Advances in three-dimensional wall-bounded flows . Transactions of the ASME. Journal of Fluids Engineering , 118 : 219 – 231 .
  • Moin , P. , Shih , T. H. , Driver , D. and Mansour , N. N. 1990 . Direct numerical simulation of a three-dimensional turbulent boundery layer . Physics of Fluids, , A 2 : 1846 – 1853 .
  • Lumley , J. L. and Newman , G. R. 1977 . The return to isotropy of homogeneous turbulence . Journal of Fluid Mechanics , 82 : 161 – 178 .

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.