Publication Cover
Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 46, 2004 - Issue 7
191
Views
14
CrossRef citations to date
0
Altmetric
Original Articles

WALL PROPERTIES AND HEAT TRANSFER IN NEAR-WALL TURBULENT FLOW

, , , , &
Pages 717-729 | Received 01 Jan 2004, Accepted 01 Jun 2004, Published online: 17 Aug 2010

References

  • Polyakov , A. F. 1974 . Wall Effect of Temperature Fluctuations in the Viscous Sublayer . Teplofizika Vysokih Temperatur , 12 : 328 – 337 .
  • Iritani , Y. , Kasagi , N. and Hizata , M. 1985 . “ Heat Transfer Mechanism and Associated Turbulence Structure in the Near-Wall Region of a Turbulent Boundary Layer ” . In Proc. 4th Symp. on Turbulent Shear Flows , Germany : Karlsruhe .
  • Khabakhpasheva , Y. M. 1986 . “ Experimental Investigation of Turbulent Momentum and Heat Transfer in the Proximity of the Wall ” . In Heat Transfer 1986, Proc. 8th Int. Heat Transfer Conf. San Francisco, CA, , USA
  • Hetsroni , G. and Rozenblit , R. 1994 . Heat Transfer to a Liquid-Solid Mixture in a Flume . Int. J. Multiphase Flow , 20 : 671 – 689 .
  • Mosyak , A. , Pogrebnyak , E. and Hetsroni , G. 2001 . Effect of Constant Heat Flux Boundary Condition on Wall Temperature Fluctuations . Trans. ASME, J. Heat Transfer , 123 : 213 – 218 .
  • Kasagi , N. , Kuroda , A. and Hirata , M. 1989 . Numerical Investigation of Near-Wall Turbulent Heat Transfer Taking into Account the Unsteady Heat Conduction in the Solid Wall . Trans. ASME, J. Heat Transfer , 111 : 385 – 392 .
  • Tiselj , I. , Bergant , R. , Mavko , B. , Bajsic , I. and Hetsroni , G. 2001 . DNS of Turbulent Heat Transfer in Channel Flow with Heat Conduction in the Solid Wall . Trans. ASME, J. Heat Transfer , 123 : 849 – 857 .
  • Sommer , T. P. , So , R. M. C. and Zhang , H. S. 1994 . Heat Transfer Modelling and the Assumption of Zero Wall Temperature Fluctuations . Trans. ASME, J. Heat Transfer , 116 : 855 – 863 .
  • Kays , W. M. and Crawford , M. E. 1980 . Convective Heat and Mass Transfer , 2 , 259 New York : McGraw-Hill .
  • Kasagi , N. , Tomita , Y. and Kuroda , A. 1992 . Direct Numerical Simulation of Passive Scalar Field in a Turbulent Channel Flow . Trans. ASME, J. Heat Transfer , 114 : 598 – 606 .
  • Kim , J. and Moin , P. 1989 . “ Transport of Passive Scalars in a Turbulent Channel Flow ” . In Turbulent Shear Flows VI , 85 Berlin : Springer-Verlag .
  • Kawamura , H. , Ohsaka , K. , Abe , H. and Yamamoto , K. 1998 . DNS of Turbulent Heat Transfer in Channel Flow with Low to Medium-High Prandtl Number Fluid . Int. J. Heat Fluid Flow , 19 : 482 – 491 .
  • Kasagi , N. and Iida , O. 1999 . “ Progress in Direct Numerical Simulation of Turbulent Heat Transfer ” . In Proc. 5th ASME/JSME Joint Thermal Engineering Conf. San Diego, CA, , USA
  • Na , Y. , Papavassiliou , D. V. and Hanratty , T. J. 1999 . Use of Direct Numerical Simulation to Study the Effect of Prandtl Number on Temperature Fields . Int. J. Heat Fluid Flow , 20 : 187 – 195 .
  • Tiselj , I. , Pogrebnyak , E. , Li , C. , Mosyak , A. and Hetsroni , G. 2001 . Effect of Wall Boundary Condition on Scalar Transfer in a Fully Developed Turbulent Flume . Phys. Fluids , 13 : 1028 – 1039 .
  • Kong , H. , Choi , H. and Lee , J. S. 2000 . Direct Numerical Simulation of Turbulent Thermal Boundary Layers . Phys. Fluids , 12 : 2555 – 2568 .
  • Teitel , M. and Antonia , R. A. 1993 . Heat Transfer in Fully-Developed Turbulent Channel Flow—Comparison between Experiment and Direct Numerical Simulations . Int. J. Heat Mass Transfer , 36 ( 6 ) : 1701 – 1706 .
  • Churchill , S. W. 2002 . A Reinterpretation of the Turbulent Prandtl Number . Ind. Eng. Chem. Res. , 41 : 6393 – 6401 .
  • Morinishi , Y. , Tamano , S. and Nakabayashi , K. 2004 . Direct Numerical Simulation of Compressible Turbulent Channel Flow between Adiabatic and Isothermal Walls . J. Fluid Mechvol , 502 : 273 – 308 .
  • Mitrovic , B. M. and Papavassiliou , D. V. 2004 . On the Prandtl or Schmidt Number Dependence of the Turbulent Heat or Mass Transfer Coefficient . Chem. Eng. Sci. , 59 ( 3 ) : 543 – 555 .

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.