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Numerical solution of radiative transfer equation coupled with nonlinear heat conduction equation

F. Asllanaj (LEMTA and IECN, Faculté des Sciences, Vandoeuvre‐les‐Nancy, France)
G. Jeandel (LEMTA, Faculté des Sciences, Vandoeuvre‐les‐Nancy, France, and)
J.R. Roche (IECN, Faculté des Sciences, Vandoeuvre‐les‐Nancy, France)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 1 August 2001

880

Abstract

A new way of solving the steady‐state coupled radiative‐conductive problem in semi‐transparent media is proposed. An angular discretization technique is applied in order to express the radiative transfer equation (RTE) in an inhomogeneous system of linear differential equations associated with Dirichlet boundary conditions. The system is solved by a direct method, after diagonalizing the characteristic matrix of the medium. The RTE is coupled with the nonlinear heat conduction equation. A simulation of a real semi‐transparent medium composed of silica fibers is illustrated. Comparison with results of other methods validates the new model. Moreover, the general scheme is easy to code and fast. The algorithm proved to be robust and stable.

Keywords

Citation

Asllanaj, F., Jeandel, G. and Roche, J.R. (2001), "Numerical solution of radiative transfer equation coupled with nonlinear heat conduction equation", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 11 No. 5, pp. 449-473. https://doi.org/10.1108/EUM0000000005528

Publisher

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MCB UP Ltd

Copyright © 2001, MCB UP Limited

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