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Communication Dans Un Congrès Année : 2016

LES of heat transfer in pipe flow of power-law fluids

Résumé

Heat transfer of turbulent forced convection of power-law fluids, flowing in a heated horizontal pipe at isoflux conditions, is numerically analyzed by Large Eddy Simulations (LES), with the extended Smagorinsky model, for various power law indices (0.75≤n≤1.2) at different Reynolds and Prandtl numbers (4000≤Re s ≤12000 and 1≤Pr s ≤100) for a non-thermally-dependent fluid, at Pearson number Pn=0. A thermally-dependent fluid is also considered for the case n=0.75, at Re s =4000 and Pr s =1, for different Pearson numbers (0.5≤Pn≤5). To validate the present computations, the LES predictions are compared to the results reported in the open literature for the Nusselt number correlations at Pn=0. The LES predictions also allow a better understanding of the physical mechanisms involved in non-newtonian thermally-dependent fluid flows: with increasing Pn, the relative viscosity is enhanced towards the pipe center while the friction factor and the Nusselt number are significantly reduced.
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Dates et versions

hal-01376273 , version 1 (04-10-2016)

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  • HAL Id : hal-01376273 , version 1

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Paulin Sourou Gnambode, Meryem Ould-Rouiss, Xavier Nicolas, Paolo Orlandi. LES of heat transfer in pipe flow of power-law fluids. Eurotherm Seminar 106, Oct 2016, Paris, France. ⟨hal-01376273⟩
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