Volume 94,   №4

HYBRID APPROACH TO MODELING THE PROCESS OF CONVECTIVE RADIATIVE HEAT AND MASS TRANSFER IN CLOSED DIFFERENTIALLY HEATED CAVITIES



A hybrid model has been developed for the analysis of the process of combined mass and heat transfer in closed rectangular cavities under the conditions of volumetric radiation of a medium. Within the framework of the formulated method, hydrodynamics is described by the mesoscopic lattice Boltzmann method, and the macroscopic equations of energy and concentration are described by the method of fi nite differences. To calculate the radiation fl ux, use was made of approximation of an optically thick layer. Based on the results of mathematical modeling, it has been established that accounting for radiation heat transfer results in an increase of the incidence angle of thermal stratifi cation and the formation of external secondary fl ows. The convective Nusselt number decreases as the radiation parameter rises. On the other hand, it has little effect on the mass transfer rate
 
 
Author:  A. É. Nee
Keywords:  lattice Boltzmann equations, hybrid model, method of fi nite differences, Rosseland model, natural convection
Page:  1008

A. É. Nee.  HYBRID APPROACH TO MODELING THE PROCESS OF CONVECTIVE RADIATIVE HEAT AND MASS TRANSFER IN CLOSED DIFFERENTIALLY HEATED CAVITIES //Journal of engineering physics and thermophysics. . Volume 94, №4. P. 1008.


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