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Numerical analysis of combined radiation and unsteady natural convection within a horizontal annular space

Mohamed Naceur Borjini (Laboratoire de Thermodynamique et Energétique de l’Université de Perpignan, Perpignan, France)
Cheikh Mbow (Laboratoire de Thermodynamique et Energétique de l’Université de Perpignan, Perpignan, France)
Michel Daguenet (Laboratoire de Thermodynamique et Energétique de l’Université de Perpignan, Perpignan, France)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 1 November 1999

502

Abstract

The effect of radiation on unsteady natural convection in a two‐dimensional participating medium between two horizontal concentric and vertically eccentric cylinders is investigated numerically. The equations of transfer are written by using a bicylindrical coordinates system, the stream function, and the vorticity. The finite volume radiation solution method and the control volume approach are used to discretize the coupled equations of radiative transfer, momentum, and energy. Original results are obtained for three eccentricities, Rayleigh number equal to 104, 105, and a wide range of radiation‐conduction parameter. The effects of optical thickness, wall emissivity, and scattering on flow intensity and heat transfer are discussed.

Keywords

Citation

Naceur Borjini, M., Mbow, C. and Daguenet, M. (1999), "Numerical analysis of combined radiation and unsteady natural convection within a horizontal annular space", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 9 No. 7, pp. 742-764. https://doi.org/10.1108/09615539910371119

Publisher

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MCB UP Ltd

Copyright © 1999, MCB UP Limited

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