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Variable viscosity effects on combined heat and mass transfer by free convection over a truncated cone in porous media: UWT/UWC

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An analysis is presented is to study the beat and mass transfer characteristics of natural convection flow about a truncated cone embedded in a saturated porous medium with uniform surface temperature/concentration under the combined buoyancy effects thermal and mass diffusion. The transformed governing equations are solved by Keller box method. Numerical results for dimensionless temperature and concentration; the local Nuss elt (Sherwood) numbers are presented over a wide range of dimensionless distance ξ, Lewis number Le, buoyancy ratio N and the wall to ambient viscosity ratio v∗. It has been found that the local Nusselt number and Sherwood number decrease with decreasing the wall to ambient viscosity ratio v∗. Furthermore, it is shown that the local Nusselt (Sherwood) numbers of the truncated cone approach those of inclined plate (full cone) for the case of constant viscosity at ξ = 0 (ξ → ∞).
Słowa kluczowe
Rocznik
Strony
51--61
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
  • Assuit University, Faculty of Science, Department of Mathematics, Assuit, Egypt
autor
  • Minia University, Faculty of Science, Department of Mathematics, Minia, Egypt
autor
  • Minia University, Faculty of Science, Department of Mathematics, Minia, Egypt
Bibliografia
  • [1] Trevisan, O.V. and Bejan N.: Combined heat and mass transfer by natural convection in a porous medium, Adv. Heat Transfer, 20, (1990), 315-352.
  • [2] Bejan, A. and Khair, N.R.: Heat and mass transfer by natural convection in a porous medium, Int. J. Heat Mass Transfer, 28, (1985), 909-918.
  • [3] Singh, P. and Queeny, Q.: Free convection heat and mass transfer along a vertical surface in a porous medium, Acta Mechanica, 123, (1997), 69-73.
  • [4] Lai, F.C., Choi, C.Y., Kułacki, F.A.: Coupled heat and mass transfer by natural convection from slender bodies of revolution in porous media, Int. Comm. Heat and Mass Transfer, 17, (1990), 609-920.
  • [5] Yih, K.A.: Coupled heat and mass transfer by free convection over a truncated cone in porous media: VWT/VWC or VHF/VMF, Acta Mechanica, 137, (1999), 83-97.
  • [6] Kassoy, D.R. and Zebib, A.: Variable viscosity effects on the onset of convection in porous media, Physics Fluids, 18, (1975), 1649-1651.
  • [7] Straus, J.M. and Schubert, G.: Thermal convection of water in a porous medium: effects of temperature and pressure dependent thermodynamic and transport properties, J. Geophys. Res., 82, (1977), 325-333.
  • [8] Horne, R.N. and O’Sullivan, M. J.: Convection in a porous medium heated from below: the effect of temperature dependent viscosity and thermal expansion coefficient, J. Heat Transfer, 100, (1978), 448-452.
  • [9] Gary, J., Kassoy, D.R., Tadjeran, H. and Zebib, A.: The effect of significant viscosity variation on convective heat transport in water-saturated porous media, J. Fluid Mech., 117, (1982), 233-249.
  • [10] Blythe, P.A. and Simpkins, P.G.: Convection in porous layer for a temperature dependent viscosity, Int. J. Heat Mass Transfer, 24, (1981), 497-506.
  • [11] Ramrez, N.E. and Sącz, A.E.: The effect of variable viscosity on boundary-layer heat transfer in a porous medium, Int. Comm. Heat Mass Transfer, 17, (1990), 477-488.
  • [12] Lai, F.C. and Kułacki, F.A.: The effect of variable viscosity on convective heat transfer along a vertical surface in a saturated porous medium, Int. J. Heat Mass Transfer, 33, (1990), 1028-1031.
  • [13] Jang, J.Y. and Leu, J.S.: Variable viscosity effects on the vortex instability of free convection boundary layer over о horizontal surface in a porous medium, Int. J. Heat Mass Transfer, 38, (1993), 1287-1294.
  • [14] Cheng, P., Le, T.T. and Pop, I.: Natural convection of a Darcian fluid about a cone, Int. Comm. Heat Mass Transfer, 12, (1977), 705-717.
  • [15] Hassanien, I.A. and Omar, G.M.: Variable permeability effects on mixed convection along a vertical wedge embedded in a porous medium with variable surface heat flux, Appl. Math, and Computation, (2002), in press.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD7-0032-0078
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