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Effect of thermal dispersion on free convection in a fluid saturated porous medium
Authors:Ibrahim A Abbas  MF El-Amin  Amgad Salama
Institution:1. Mathematics Department, Faculty of Science, Sohag University, Sohag 82524, Egypt;2. Mathematics Department, Aswan Faculty of Science, South Valley University, Aswan 81258, Egypt;3. Environmental Engineering Department, Konkuk University, Seoul 143-701, South Korea
Abstract:The present article considers a numerical study of thermal dispersion effect on the non-Darcy natural convection over a vertical flat plate in a fluid saturated porous medium. Forchheimer extension is considered in the flow equations. The coefficient of thermal diffusivity has been assumed to be the sum of molecular diffusivity and the dispersion thermal diffusivity due to mechanical dispersion. The non-dimensional governing equations are solved by the finite element method (FEM) with a Newton–Raphson solver. Numerical results for the details of the stream function, velocity and temperature contours and profiles as well as heat transfer rates in terms of Nusselt number are obtained. The study shows that the increase in thermal dispersion coefficient of the porous medium results in more heat energy to disperse away in the normal direction to the wall. This induces more fluid to flow along the wall, enhancing the heat transfer coefficient particularly near the wall.
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