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MHD natural convection inside an inclined trapezoidal porous enclosure with internal heat generation or absorption subjected to isoflux heating
Authors:Ahmed Kadhim Hussein  Sameh E Ahmed  Sumon Saha  Arman Hasanpour  HA Mohammed  Lioua Kolsi  IK Adegun
Affiliation:1. Department of Mechanical Engineering, College of Engineering, Babylon University, Babylon City, Iraq;2. Department of Mathematics, Faculty of Sciences, South Valley University, Qena, Egypt;3. Department of Mechanical Engineering, University of Melbourne, VIC 3010, Australia;4. Department of Mechanical Engineering, Babol University of Technology, Babol, Iran;5. Department of Thermofluids, Faculty of Mechanical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor Bahru, Malaysia;6. Unité de Métrologie en Mécanique des Fluides et Thermique, Ecole Nationale d'Ingénieurs, Monastir, Tunisia;7. Department of Mechanical Engineering, University of Ilorin, Ilorin, Nigeria
Abstract:A steady laminar two‐dimensional magneto‐hydrodynamic natural convection flow in an inclined trapezoidal enclosure filled with a fluid‐saturated porous medium is investigated numerically using a finite difference method. The left and right vertical sidewalls of the trapezoidal enclosure are maintained at a cold temperature. The horizontal top wall is considered adiabatic while the bottom wall is subjected to isoflux heating. A volumetric internal heat generation or absorption is embedded inside the trapezoidal enclosure while an external magnetic field is applied on the left sidewall of the enclosure. In the current work, the following parametric ranges of the non‐dimensional groups are used: Hartmann number is varied as equation image , Darcy number is taken as equation image , 10?4, and 8 × 10?5, Rayleigh number is varied as equation image , Prandtl number is considered constant at Pr = 0.7, the dimensionless internal heat generation or absorption parameter is varied as Δ = ?0.2, 0, 1, and 2.0, while the trapezoidal enclosure inclination angle is varied as equation image . The results indicated a strong flow circulation occurs when the Darcy and the Rayleigh numbers are high. In addition, it is found that the Hartmann number, internal heat generation or absorption parameter and inclination angle have an important role on the flow and thermal characteristics. It is also found that when the enclosure inclination angle and Hartmann number increase the average Nusselt number along the hot bottom wall decreases. © 2012 Wiley Periodicals, Inc. Heat Trans Asian Res; Published online in Wiley Online Library ( wileyonlinelibrary.com/journal/htj ). DOI 10.1002/htj.21013
Keywords:natural convection  magneto‐hydrodynamics  heat generation or absorption  trapezoidal enclosure  porous medium  Darcy model  isoflux heating
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