Title of article :
DNS of turbulent heat transfer in a channel flow with a high spatial resolution
Author/Authors :
Kozuka، نويسنده , , Makoto and Seki، نويسنده , , Yohji and Kawamura، نويسنده , , Hiroshi، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
11
From page :
514
To page :
524
Abstract :
Direct numerical simulations of turbulent heat transfer in a channel flow are performed to investigate the effects of Reynolds and Prandtl numbers on higher-order turbulence statistics such as a turbulent Prandtl number and the budget for the dissipation rate of the temperature variance. The Reynolds numbers based on the friction velocity and the channel half width are 180 and 395, and the molecular Prandtl numbers Pr’s 0.71–10.0. Careful attention is paid to ensure accuracy of the higher-order statistics through the use of a high spatial resolution comparable to Batchelor length scale. The wall-asymptotic value of the turbulent Prandtl number is mostly independent of Reynolds number for the current range of Pr’s. The budget for the dissipation rate of the temperature variance has been computed, and the negligible effect of a Reynolds number on the sum of all source and sink terms in near-wall region in the current computational range is found. This result is quite similar to the one in the budget for the dissipation rate of turbulent energy. In addition, a priori test for existing models is also performed to assess the Pr dependence on the individual terms and their summations in the budget.
Keywords :
Reynolds- and Prandtl-number dependence , direct numerical simulation , Turbulent heat transfer , Channel flow
Journal title :
International Journal of Heat and Fluid Flow
Serial Year :
2009
Journal title :
International Journal of Heat and Fluid Flow
Record number :
2381733
Link To Document :
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