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First order chemical reaction effects on exponentially accelerated vertical plate with variable mass diffusion in the presence of thermal radiation

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Effects of transfer of mass and free convection on the flow field of an incompressible viscous fluid past an exponentially accelerated vertical plate with variable surface temperature and mass diffusion are studied. Results for velocity, concentration, temperature are obtained by solving governing equations using the Laplace transform technique. It is observed that the velocity increases with decreasing values of the chemical reaction parameter or radiation parameter. But the trend is just reversed with respect to the time parameter. The skin friction is also studied.
Rocznik
Strony
329--344
Opis fizyczny
Bibliogr. 12 poz., tab., wykr.
Twórcy
  • Deparment of Applied Mathematics Sri Venkateswara College of Engineering Irungattukottai 602117, Sriperumbudur Taluk, INDIA
  • Department of Mathematics Rajalakshmi Engineering College, Thandalam Sriperumbudur 602 105, INDIA
Bibliografia
  • [1] Chambre P.L. and Young J.D. (1958): On the diffusion of a chemically reactive species in a laminar boundary layer flow. – The Physics of Fluids, vol.1, pp.48-54.
  • [2] Das U.N., Deka R. and Soundalgekar V.M. (1994): Effects of mass transfer on flow past an impulsively started infinite vertical plate with constant heat flux and chemical reaction. – Forschung im Ingenieurwesen, vol.60, pp.284-287.
  • [3] Das U.N., Deka R. and Soundalgekar V.M. (1996): Radiation effects on flow past an impulsively started vertical infinite plate. – J. Theo. Mech., vol.1, pp.111-115.
  • [4] Das U.N., Deka R. and Soundalgekar V.M. (1999): Effects of mass transfer on flow past an impulsively started infinite vertical plate with chemical reaction. – The Bulletin, GUMA, vol.5, pp.13-20.
  • [5] England W.G. and Emery A.F. (1969): Thermal radiation effects on the laminar free convection boundary layer of an absorbing gas. – J. Heat Transfer, vol.91, pp.37-44.
  • [6] Gupta A.S., Pop I. and Soundalgekar V.M. (1979): Convection effects on the flow past an accelerated vertical plate in an incompressible dissipative fluid. – Rev. Roum. Sci. Techn.-Mec. Apl., vol.24, pp.561-568.
  • [7] Hossain M.A. and Shayo L.K. (1986): The skin friction in the unsteady free convection flow past an accelerated plate. – Astrophysics and Space Science, vol.125, pp.315-324.
  • [8] Hossain M.A. and Takhar H.S. (1996): Radiation effect on mixed convection along a vertical plate with uniform surface temperature. – Heat and Mass Transfer, vol.31, pp.243-248.
  • [9] Jha B.K., Prasad R. and Rai D. (1991): Mass transfer effects on the flow past an exponentially accelerated vertical plate with constant heat flux. – Astrophysics and Space Science, vol.181, pp.125-134.
  • [10] Kafousias N.G. and Raptis A.A. (1981): Mass transfer and free convection effects on the flow past an accelerated vertical infinite plate with variable suction or injection. – Rev. Roum. Sci. Techn.-Mec. Apl., vol.26, pp.11-2.
  • [11] Muthucumaraswamy R. and Valliammal V. (2009): First order chemical reaction on exponentially accelerated isothermal vertical plate with mass diffusion. – Annals of Faculty of Hunedoara, Journal of Engineering-Tome VII, Fascicule I.
  • [12] Singh A.K. and Kumar N. (1984): Free convection flow past an exponentially accelerated vertical plate. – Astrophysics and Space Science, vol.98, pp.245-258.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-74e9f521-3a56-454d-a5a9-9b4d813b8b22
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