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Radiation effect on three dimensional vertical channel flow through porous medium

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The flow of a viscous incompressible fluid through a vertical channel in the presence of radiation immersed in a porous medium has been studied. Approximate solutions have been obtained for the velocity and temperature fields, shear stresses and rate of heat transfer using the perturbation technique. It is found that the primary velocity decreases with an increase in the radiation parameter as well as the Prandtl number for cooling of the plate. It is also found that with an increase in the permeability parameter, the primary velocity increases for cooling of the plate. The magnitude of the secondary velocity decreases near the plate y = 0 and increases near the plate y = d with an increase in the permeability parameter. The temperature distribution decreases with an increase of the radiation parameter as wall as the Prandtl number for cooling of the plate. The shear stresses and the rate of heat transfer, which are of physical interest, are presented in the form of tables.
Rocznik
Strony
817--833
Opis fizyczny
Bibliogr. 12 poz., rys., tab., wykr.
Twórcy
autor
  • Department of Mathematics Ghatal Rabindra Satabarsiki Mahavidyalaya Paschim Midnapore, West Bengal, INDIA
Bibliografia
  • [1] Ahmed S. and Ahmed N. (2004): Two dimensional MHD oscillatory flow along a uniformly moving infinite vertical porous plate bounded by a porous medium. – Indian J. Pure Appl. Math., vol.35, No.12, pp.1309-13.
  • [2] Guria M., Ghara N. and Jana R.N. (2010): Radiation effect on three dimensional vertical channel flow. – Int. J. Applied Mechanics and Engineering, vol.15, No.4, pp.1065-1081.
  • [3] Guria M., Ghara N. and Jana R.N. (2011): Radiation effect on the three-dimensional MHD flow past a vertical porous plate. – Journal of Physical Sciences, vol.15, pp.161-170.
  • [4] Pathak G., Maheswari C.H. and Gupta S.P. (2006): Effect of radiation on unsteady free convection flow bounded by an oscillating plate with variable wall temperature. – Int. J. Applied Mechanics and Engineering, vol.11, No.2, pp.371-382.
  • [5] Raptis A. (1983): Unsteady free convective flow through a porous medium. – Int. J. Engng. Sci., vol.21, pp.345-48.
  • [6] Raptis A. (1998): Radiation and free convection flow through a porous medium. – Int. Comm. Heat Mass Transfer, vol.25, No.2, pp.289-295.
  • [7] Raptis A. and Perdikis C.P. (1985): Oscillatory flow through a porous medium in the presence of free convective flow. – Int. J. Engng. Sci., vol.23, pp.51-55.
  • [8] Seddeek MA. (2000): The effect of variable viscosity on hydromagnetic flow and heat transfer past a continuously moving porous boundary with radiation. – Int. Comm. Heat Mass Transfer, vol.27, No.7, pp.1037-1046.
  • [9] Sharma B.K., Agarwal M. and Chaudhary R.C. (2007): Radiation effect on temperature distribution in three dimensional Couette flow with suction injection. – Applied Mathematics Mechanics, vol.28, No.3, pp.309-316.
  • [10] Singh P., Mishra J.K. and Narayanan K.A. (1988): Three dimensional convective flow through a porous medium with variable suction velocity. – Indian J. Pure Appl. Math. vol.19, pp.1130.
  • [11] Takhar H.S., Gorla R.S.R. and Soundalgekar V.M. (1996): Radiation effects on MHD free convection flow of a radiating gas past a semi-infinite vertical plate. – Int. J. Numer. Meth. Heat Fluid Flow, vol.6, No.2, pp.77-83.
  • [12] Varshney C.L. (1979): Oscillatory two dimensional flow through a porous medium by a porous plate. – Indian J. Pure Appl. Math., vol.10, pp.1558-1564.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-50b3352d-e604-4207-b82b-403ab8e3de05
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