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Double-diffusive convection in an anisotropic porous layer using the Darcy–Brinkman–Forchheimer formulation

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Języki publikacji
EN
Abstrakty
EN
The aim of this paper is to discuss the double-diffusive natural convection in an anisotropic porous medium saturated with a binary fluid. The vertical walls of porous cavity are subjected to uniform temperature and concentration whereas the other surfaces are assumed to be adiabatic and impermeable. Darcy–Brinkman–Forchheimer model with the Boussinesq approximation was used to formulate the problem and the finite volume method was adopted to resolve the governing equations system. A parametric study was conducted and the results are presented and analyzed. They showed an excellent agreement in comparison with those reported in literature. They also allowed the evaluation of the control parameters effect on the flow structure, heat and mass transfer.
Rocznik
Strony
89--102
Opis fizyczny
Bibliogr. 20 poz., rys. kolor.
Twórcy
autor
  • Laboratoire d’Énergétique Appliqué et de Pollution Faculté des Sciences de la Technologie Université des Frères Mentouri Constantine 1, Algeria
autor
  • Laboratoire d’Énergétique Appliqué et de Pollution Départament de Génie Mécanique Faculté des Sciences de la Technologie Université des Frères Mentouri Constantine 1, Algeria
Bibliografia
  • 1. D. B. Ingham, I. Pop, Transport Phenomena in Porous Media, Pergamon Press, New York, 1998.
  • 2. D.A. Nield, A. Bejan, Convection in Porous Media, Springer, New York, 2013.
  • 3. K. Vafai, Handbook of Porous Media, Taylor/CRC Press, Francis, London/ Boca Raton, FL, 2005.
  • 4. J. Ni, C. Beckermann, Natural convection in a vertical enclosure filled with anisotropic porous media, Journal of Heat Transfer, 113, 1033–1037, 1991.
  • 5. P. Bera, V. Eswaran, P. Singh, Numerical study of heat and mass transfer in an anisotropic porous enclosure due to constant heating and cooling, Numerical Heat Transfer, 34, 887–905, 1998.
  • 6. A.C. Baytas, I. Pop, Free convection in oblique enclosures filled with a porous medium, International Journal of Heat and Mass Transfer, 42, 1047–1057, 1999.
  • 7. D.A.S. Rees, A. Postelnicu, The onset of convection in an inclined anisotropic porous layer, International Journal of Heat and Mass Transfer, 44, 4127–4138, 2001.
  • 8. R. Bennacer, A. Tobbal, H. Beji, Double diffusive convection in a vertical enclosure filled with anisotropic porous media, International Journal of Thermal Sciences, 40, 30–41, 2001.
  • 9. S.A.M. Haddad, Thermal convection in a darcy porous medium with anisotropic spatially varying permeability, Acta Applicandae Mathematicae, 132, 359–370, 2014.
  • 10. A.K. Singh, T. Basak, A. Nag, S. Roy, Heatlines and thermal management analysis for natural convection within inclined porous square cavities, International Journal of Heat and Mass Transfer, 8, 583–597, 2015.
  • 11. N. Hadidi, R. Bennacer, Y. Ould-Amer, Two-dimensional thermosolutal natural convective heat and mass transfer in a bi-layered and inclined porous enclosure, Energy, 93, 2582–2592 , 2015.
  • 12. A.J. Harfash, A.A. Hill, Simulation of three dimensional double-diffusive through flow in internally heated anisotropic porous media, International Journal of Heat and Mass Transfer, 72, 609–615, 2014.
  • 13. S.V. Patankar, Numerical Heat Transfer and Fluid Flow, Hemisphere, New York, 1980.
  • 14. H.K. Versteeg, W. Malalasekera, An Introduction to Computational Fluid Dynamics. The Finite Volume Method, 2nd ed., Pearson Education Limited, Glasgow, 262–266, 2007
  • 15. G. Lauriat, V. Prassad, Non-Darcian effect on natural convection in a vertical porous enclosure, International Journal of Heat and Mass Transfer, 32, 11, 2135–2148, 1989.
  • 16. O.V. Trevisan, A. Bejan, Natural convection with combined heat and mass transfer buoyancy effects in a porous medium, International Journal of Heat and Mass Transfer, 28, 1597–1611, 1985.
  • 17. P. Nithiarasu, K. N. Seetharamu, T. Sundararajan, Double-diffusive natural convection in an enclosure filled with fluid-saturated porous medium: A generalized non-Darcy approach, Numerical Heat Transfer, Part A, 30, 413–426, 1996.
  • 18. R. Younsi, A. Harkati, D. Kalache, Numerical simulation of double diffusive natural convection in porous cavity: Opposing flow, Arabian Journal for Science and Engineering, 26, 2b, 145–155, 2002.
  • 19. R. Bennacer, A. Tobbal, H. Beji, Natural thermo-solutal convection in porous anisotropic cavity: Darcy-Brinkman formulation, [in French: Convection naturelle Thermosolutale dans une Cavité Poreuse Anisotrope: Formulation de Darcy–Brinkman], Rev. Energ. Ren., 5, 1–21, 2002.
  • 20. G. Lauriat, V. Prassad, Natural convection in vertical porous cavity: Numerical study for Brinkman – extended Darcy formulation, ASME Journal of Heat Transfer, 109, 688–696, 1987.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1bc5893f-9f12-43c8-b546-c9c78d1ed221
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