226
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Turbulent-viscosity modeling applicable to swirling flows, based on a composite time scale with mean flow helicity partially incorporated

, , , &
Article: N5 | Received 31 May 2010, Accepted 24 Sep 2010, Published online: 17 Jan 2011

References

  • Chen , J. C. and Lin , C. A. 1999 . Computations of strongly swirling flows with second-order closures . Int. J. Numer. Meth. Fluids , 30 : 493 – 508 .
  • Jones , L. , Gaskel , P. H. and Thompson , H. M. 2005 . Anisotropic, isothermal turbulent swirling flow in a complex combustor geometry . Int. J. Numer. Meth. Fluids , 47 : 1053 – 1059 .
  • Jawarneh , A. M. and Vatistas , G. H. 2006 . Reynolds stress model in the prediction of confined turbulent swirling flows . ASME Trans. J. Fluids. Eng. , 28 : 1377 – 1382 .
  • Taulbee , D. B. 1992 . An improved algebraic stress model and corresponding nonlinear stress model . Phys. Fluids , A 4 : 2555 – 2561 .
  • Gatski , T. B. and Speziale , C. G. 1993 . On explicit algebraic stress models for complex turbulent flow . J. Fluid Mech. , 254 : 59 – 78 .
  • Girimaji , S. S. 1996 . Fully explicit and self-consistent algebraic Reynolds stress model . Theoret. Comput. Fluid Dynamics , 8 : 387 – 402 .
  • Craft , T. J. , Launder , B. E. and Suga , K. 1997 . Prediction of turbulent transitional phenomena with a nonlinear eddy-viscosity model . Int. J. Heat Fluid Flow , 18 : 15 – 28 .
  • Abe , K. , Kondoh , T. and Nagano , Y. 1997 . On Reynolds-stress expressions and near-wall scaling parameters for predicting wall and homogeneous turbulent shear flows . Int. J. Heat Fluid Flow , 18 : 266 – 282 .
  • Thangam , S. , Wang , S. and Zhou , Y. 1999 . Development of a turbulence model based on the energy spectrum for flows involving rotation . Phys. Fluids , 11 : 2225 – 2234 .
  • Wallin , S. and Johansson , A. V. 2006 . An explicit algebraic Reynolds stress model for incompressible and compressible turbulent flows . J. Fluid Mech. , 403 : 89 – 132 .
  • Hwang , C. C. , Zhu , G. and Massoudi , M. 1993 . A comparison of the linear and nonlinear K−ϵturbulence models in combustors . ASME J. Fluids Eng. , 119 : 93 – 102 .
  • Murakami , N. , Kitoh , O. and Katayama , Y. 1976 . An experimental study of swirling flow in pipes . Bull. JSME , 19 : 118 – 126 .
  • Kitoh , O. 1991 . Experimental study of turbulent swirling flow in a straight pipe . J. Fluid Mech. , 225 : 445 – 447 .
  • Yoshizawa , A. , Nisizima , S. and Shimomura , Y. 2006 . A new methodology for Reynolds-averaged modeling based on the amalgamation of heuristic-modeling and turbulence-theory methods . Phys. Fluids , 18 : 035109/1 – 17 .
  • Yokoi , N. and Yoshizawa , A. 1993 . Statistical analysis of the effects of helicity in inhomogeneous turbulence . Phys. Fluids , A 5 : 464 – 477 .
  • Yoshizawa , A. 1984 . Statistical analysis of the deviation of the Reynolds stress from its eddy-viscosity approximation . Phys. Fluids , 27 : 1377 – 1387 .
  • Yoshizawa , A. 1998 . Hydrodynamic and Magnetohydrodynamic Turbulent Flows: Modelling and Statistical Theory , Dordrecht : Kluwer .
  • Okamoto , M. 1994 . Theoretical investigation of an eddy-viscosity-type representation of the Reynolds stress . J. Phys. Soc. Jpn. , 63 : 2102 – 2122 .
  • Abe , H. , Kawamura , H. and Matsuo , Y. 2004 . Surface heat flux-fluctuations in a turbulent channel flow up to Re τ=1020, with Pr=0.025and 0.71 . Int. J. Heat Fluid Flow , 25 : 404 – 419 .
  • Hamlington , P. E. and Dahm , W. J.A. 2008 . Reynolds stress closure for nonequilibrium effects in turbulent flows . Phys. Fluids , 20 : 115101/1 – 18 .
  • Wu , X. and Moin , P. 2008 . A direct numerical simulation study on the mean velocity characteristics in turbulent pipe flow . J. Fluid Mech. , 608 : 81 – 112 .
  • Myong , H. K. and Kasagi , N. 1990 . A new approach to the improvement of K−ϵturbulence model for wall-bounded shear flows . JSME Int. J. Ser. II , 33 : 63 – 72 .

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.