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Analytical solution to the MHD flow of micropolar fluid over a linear stretching sheet

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The flow due to a linear tretching sheet in a fluid with suspended particles, modeled as a micropolar fluid, is considered. All reported works on the problem use numerical methods of solution or a regular perturbation technique. An analytical solution is presented in the paper for the coupled non-linear differential equations with inhomogeneous boundary conditions.
Rocznik
Strony
397--406
Opis fizyczny
Bibliogr. 16 poz., wykr.
Twórcy
Bibliografia
  • [1] Abo-Eldahab E.M. and Ghonaim A.F. (2003): Convective heat transfer in an electrically conducting micropolar fluid at a stretching surface with uniform free stream. – App. Math. Comp., vol.137, No.2, pp.323-336.
  • [2] Agarwal R.S., Rama B. and Balaji A.V.S. (1989): Finite element solution of flow and heat transfer of a micropolar fluid a over stretching sheet. – Int. J. Engg. Sci., vol.2, pp.1421-1428.
  • [3] Bhargava R., Kumar L. and Takhar H.S. (2003): Finite element solution of mixed convection micropolar flow driven by a porous stretching sheet. – Int. J. Engg. Sci., vol.41, pp.2161-2178.
  • [4] Eldabe N.T., Elshehawey E.F., Elbarbary E.M.E. and Elgazery N.S. (2005): Chebyshev finite diffrence method for MHD flow of a micropolar fluid past a stretching sheet with heat transfer. – Appl. Maths. Comp., vol.160, No.2, pp.437-450.
  • [5] Hady F.M. (1996): Short communication on the solution of heat transfer to micropolar fluid from a non-isothermal stretching sheet with injection. – Int. J. Num. Meth. Heat Fluid Flow, vol.6, pp.99-104. from a non-isothermal stretching sheet with injection. – Int. J. Num. Meth. Heat Fluid Flow, vol.6, pp.99-104. Unauthenticated Download Date | 2/3/16 9:52 PM
  • [6] P.G.Siddheshwar and U.S.Mahabaleshwar.
  • [6] Hassanien I.A. (1998): Boundary layer flow and heat transfer on a continuous on a continuous accelerated sheet extruded in an ambient micropolar fluid. – Int. J. Comm. Heat Mass Transfer, vol.25, pp.571-583.
  • [7] Hassanien I.A. and Gorla R.S.R. (1990): Heat transfer to micropolar fluid from a non-isothermal stretching sheet with suction and blowing. – Acta Mech., vol.84, pp.191-199.
  • [8] Heruska M.H., Watson L.T. and Sankara K.K. (1986): Micropolar flow past a porous stretching sheet. – Comp. Fluids, vol.14, pp.117-129.
  • [9]Kelson N.A. and Desseaux A. (2001): Effect of surface conditions on flow of a micropolar fluid driven by a porous stretching sheet. – Int. J. Engg. Sci., vol.39, pp.1881-1897.
  • [10] Kelson N.A. and Farrell T.W. (2001): Micropolar flow over porous stretching sheet with strong suction or injection. – Int. J. Comm. Heat Mass Transfer, vol.28, No.4, pp.479-488.
  • [11] Lukaszewicz (1999): Micropolar fluid theory and applications. – Birkhauser Boston, M.A., USA.
  • [12] Mohammadein A.A. and Gorla R.S.R. (2000): Heat transfer in micropolar fluid over a stretching sheet with viscous dissipation and internal heat generation. – Int. J. Num. Math. Heat Fluid Flows, vol.11, No.1, pp.50-58.
  • [13] Nazar R., Amin N., Filip D. and Pop I. (2004): Stagnation point flow of micropolar fluid towards s stretching sheet. – Int. J. Non-Linear Mech., vol.39, pp.1227-1235.
  • [14]Rajagopal K.R., Na T.Y. and Gupta A.S. (1984): Flow of a viscoelastic fluid over a stretching sheet. – Rheo. Acta, vol.23, pp.213-215.
  • [15]Seddeek M.A. (2001): Effect of Hall and ion-slip currents on magneto-micropolar fluid and heat transfer over a nonisothermal stretching sheet with suction and blowing. – Proc. Roy. Soc. Lond. A, vol.457, pp.3039-3050.
  • [16] Siddheshwar P.G. and Mahabaleswar U.S. (2005): Effects of radiation and heat source on MHD flow of a viscoelastic liquid and heat transfer over a stretching sheet. – Int. J. Non-Linear Mech., vol.40, pp.807-820.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-39e500fd-d4bf-484b-a5d6-47a259f05e68
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