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Titre: Natural convection and volumetric radiation interactions in a concentric square annulus
Auteur(s): Bouanani, Mohammed
Benbrik, Abderrahmane
Lemonnier, Denis
Cherifi, Mohammed
Soualmi, Rabiaa
Mots-clés: Aspect ratio
Cylinders (shapes)
Finite volume method
Natural convection
Optical properties
Date de publication: 2021
Editeur: American Institute of Aeronautics and Astronautics
Collection/Numéro: Journal of Thermophysics and Heat Transfer/ Vol.35, N°3 (2021);pp. 547-559
Résumé: This paper focuses on a numerical investigation of steady two-dimensional natural convection and volumetric radiation interactions in a concentric annulus between two square isothermal cylinders. The annulus is filled with a gray absorbing–emitting and non-scattering medium. All the walls are assumed to be gray, diffuse, and opaque. The dynamic and thermal interactions are studied through a finite volume method combined with an immersed boundary technique to handle the square-shaped cylinder, whereas the discrete ordinates method is used to solve the radiative transfer equation. The present study is performed to investigate the effect of volumetric radiation on the flow for a variety of Rayleigh numbers 103 –106, three different optical thicknesses τ 0.2–1–5, a variety of Planck numbers 0.01–1, and three different aspect ratios A 0.2–0.4–0.6. The analysis is based on the dynamic and thermal fields in addition to the heat transfer rate. Results show that radiation affects significantly the flow and temperature distributions for a higher Rayleigh number Ra > 104, depending on the Planck number. The optical thickness and the aspect ratio has an important impact on the Nusselt number and percentage of radiation in heat transfer
URI/URL: https://arc.aiaa.org/doi/10.2514/1.T6112
https://doi.org/10.2514/1.T6112
http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7151
ISSN: 08878722
1533-6808 Electronic
Collection(s) :Publications Internationales

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