Department of physic, Faculty of sciences and technology, University Cheikh Anta Diop of Dakar, Dakar, Senegal.
* Corresponding Author
World Journal of Advanced Research and Reviews, 2026, 31(03), 335–342
Article DOI: 10.30574/wjarr.2026.31.3.2305
Received on 27 July 2026; revised on 05 September 2026; accepted on 07 September 2026
This study presents the results of a numerical simulation of fluid flow within a chamber bounded by a horizontal, flat wall heated at a constant flow rate and an upper wall with an elliptical outline. The results of this simulation enable the implementation of a cooling system utilising natural convection. The key parameters in this study are dimensionless numbers such as the Rayleigh number and the Nusselt number, which characterise the magnitude of heat transfer by convection. To determine the thermal parameters of the problem, we shall use the heat equation and the equation of motion in our modelling. To obtain results such as the average temperature characterising heat transfer between the fluid and the wall, and the Nusselt number indicating the efficiency of convective cooling, we will solve the non-linear equations using the finite volume method and the Gauss-Siedal iterative method.
Convection; Cooling; Nusselt Number; Rayleigh Number; Average Temperature; Convection; Finite Volume
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Fadel DIOP, Alpha Malick NDIAYE, Ibrahima KAMA and Cheikh MBOW. EFFECT OF THE RAYLEIGH NUMBER ON THE MEAN NUSSELT NUMBER AND THE MEAN TEMPERATURE IN A NATURAL CONVECTION FLOW WITH AN ELLIPTICAL-CYLINDRICAL GEOMETRY. World Journal of Advanced Research and Reviews, 2026, 31(03), 335–342. Article DOI: https://doi.org/10.30574/wjarr.2026.31.3.2305