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MHD natural convection heat and mass transfer in a micropolar fluid from radiate vertical porous surfaces with chemical reaction

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The effect of a chemical reaction on the free convection flow of a viscous incompressible conductive micropolar fluid from a radiative vertical porous plate with a uniform surface temperature, uniform rate of suction or injection and uniform magnetic field is investigated. The Rosseland diffusion approximation is used to describe the radiative heat flux in the energy equation. As the micropolar parameter increases the temperature, concentration and microrotation increase while the velocity decreases for the suction and injection case and increasing the chemie al reaction parameter decreases the velocity, concentration and microrotation for the suction and injection case while the temperature increases with the increasing of the chemical reaction parameter.
Rocznik
Strony
745--765
Opis fizyczny
Bibliogr. 12 poz., tab., wykr.
Twórcy
autor
autor
  • Department of Mathematics, Faculty of Science, Aswan South Valley University, Aswan, EGYPT, elkabeir@yahoo.com
Bibliografia
  • Afify A.A. (2004): The effect of radiation on free convective flow and mass transfer past a vertical isothermal cone surface with chemical reaction in the presence of a transverse magnetic field. - Can. J. Phys., vol.82, pp.447-458.
  • Anjali Devi S.P. and Kandasamy R. (2002): Effects of chemical reaction, heat and mass transfer on non-linear MHD laminar boundary layer flow over a wedge with suction and injection. - Int. Comm. Heat Mass Transfer, vol.29, pp.707-716.
  • Chambre P.L. and Young J.D. (1958): On the diffusion of chemically reactive species in a laminar boundary layer flow. - Phys. Fluids, vol.1, pp.48-54.
  • Chamkha A. (2003): MHD flow of uniformly stretched vertical permeable surface in the presence of heat generation/absorption and a chemical reaction. - Int. Comm. Heat Mass Transfer, vol.30, pp.413-422.
  • Cussler E.L. (1998): Diffusion mass transfer in fluid system. - 2nd ed Cambridge University.
  • Das U.N., Deka R.A. and Soundalgekar V.M. (1994): Effect of mass transfer on flow past an impulsively started infinite vertical plate with constant heat flux and chemical reaction. - Forschung im Ingenicurwesen, vol.60, pp.284-287.
  • Duwairi H.M. and Damseh Rebhi A. (1978): Magnetohydrodynamic natural convection heat transfer from radiate vertical porous surfaces. - Heat and Mass Transfer, vol.40, pp.787-792.
  • Kandasamy R., Periasamy K. and Sivagnana Prabhu K.K. (2005): Chemical reaction, heat and mass transfer on MHD flow over a vertical stretching surface with heat source and thermal stratification effects. - Int. J. of Heat and Mass Transfer, vol.48, pp.4557.
  • Muthucumaraswamy R. (2001): First order chemical reaction on flow past an impulsively started vertical plate with uniform heat and mass flux. - Acta Mechanica, vol.147, pp.45-57.
  • Muthucumaraswamy R. (2002): Effect of a chemical reaction on a moving isothermal vertical surface with suction. - Acta Mechanica, vol.155, pp.65-70.
  • Sparrow E.M. and Cess D.R. (1978): Radiation heat transfer augmented edition. - Hemisphere Publishers, Washington, D.C., Chapter 7 and 10.
  • Vajravelue K. (1986): Hydrodynamic flow and heat transfer over continuous, moving porous, flat surface. - Acta Mech., vol.64, pp.179-185.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0034-0014
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