Volume 95,   №2

NUMERICAL SIMULATION OF A FORCED CONVECTION LAMINAR FLUID FLOW WITH REGARD FOR THE THERMODIFFUSION OF NANOPARTICLES IN IT



The forced convection of the nanofl uid representing a water with aluminum oxide particles, fl owing in the laminar regime in a circular channel with a heat fl ow of constant density at the channel wall, was numerically investigated by the homogeneous and heterogeneous models of the fl uid fl ow with regard for the transport of nanoparticles in it due to their diffusion or thermodiffusion. An increase in the thermodiffusion of nanoparticles in a laminar fl uid fl ow with increase in their concentration in it was demonstrated. The results of calculations performed by the indicated two models are in good agreement with the corresponding experimental data. However, the homogeneous model as a whole approximates experimental data more closely. It is shown that, in the case where the concentration of nanoparticles in a fl uid is high (6%), the infl uence of their thermal diffusion on the heat transfer and the pressure drop in the laminar fl uid fl ow in a channel does not exceed 2%
 
 
Author:  D. V. Guzei ,  A. V. Minakov ,  V. Ya. Rudyak
Keywords:  forced convection, numerical simulation, nanofl uid, thermal diffusion, two-component model, experiment
Page:  516

D. V. Guzei.  NUMERICAL SIMULATION OF A FORCED CONVECTION LAMINAR FLUID FLOW WITH REGARD FOR THE THERMODIFFUSION OF NANOPARTICLES IN IT //Journal of engineering physics and thermophysics. . Volume 95, №2. P. 516 .


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