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Abstrakty
The steady flow of an incompressible and electrically conducting micropolar fluid between two parallel infinite plates is studied taking Hall and ionic effects into consideration. The fluid motion is due to the constant pressure gradient. An extemal uniform magnetic field directed perpendicular to the flow direction is applied. The expressions for the velocity and micro rotation are obtained. The effects of micropolar parameters, magnetic parameter, Hall parameter and ion slip parameter on the velocity, and micro rotation are discussed.
Rocznik
Tom
Strony
251--262
Opis fizyczny
Bibliogr. 22 poz., wykr.
Twórcy
autor
autor
- Department of Mathematics National Institute of Technology Warangal- 506004, INDIA, dsc@nitw.emet.in
Bibliografia
- Agrawal C. and Madan V.P. (1971): Steady laminar flow of a viscoelastic conducting fluid between two porous parallel flat plates in the presence of a transverse magnetic field. - Tensor, vol.22, pp.29.
- Ahmadi G. and Shahinpoor M. (1974): Universal stability of magneto-micropolar fluid motions. - Int. J. Eng. Sci., vol.12, pp.657.
- Alpher R.A. (1961): Heat transfer in magnetohydrodynamic flow between parallel plates. - Int. J. Heat and Mass Transfer, vol.3, pp.108.
- Asghar S., Khan M. and Hayat T. (2005): Magnetohydrodynamic transient flows of a non-Newtonian fluids. - Int. J. Non-Linear Mech., vol.40, pp.589.
- Attia H.A. (2005): Unsteady Couette flow with heat transfer considering ion slip. - Turk J. Phys., vol.29, pp.379.
- Bhargava R., Kumar L. and Takhar H.S. (2003): Numerical solution of free convection MHD micropolar fluid flow between parallel porous vertical plates. - Int. J. Eng. Scie., vol.41, pp.123.
- Chamkha A.J. (2000): Unsteady laminar hydromagnetic fluid-particle flow and heat transfer in channels and circular pipes. - Int. J. Heat Fluid Flow, vol.21, pp.740.
- Eldabe N.T.M., Hassan A.A. and Mona A.A. Mohamed (2003): Effect of couple stresses on the MHD of a non-Newtonian unsteady flow between two parallel porous plates. - Z. Naturforsch, vol.58a, pp.204.
- Eringen A.C. (1966): The theory of micropolar fluids. - J. Math. Mech., vol.16, pp.1.
- Hartmann J. and Lazarus F. (1937): Kgl. Danske Videnskab. Selskab. Mat-Fys Medd. - Vol.15, No.6, 7.
- Hassanien I.A. and Mansour M.A. (1990): Unsteady magnetohydrodynamic flow through a porous medium between two infinite parallel plates. - Astrophysics and Space Science, vol.163, No.2.
- Isers A.B. and Tarapov I.E. (1973): Flow of a magnetized liquid between parallel plates. - Magnitnaya Gidrodinamika vol.9, No.1, pp.73.
- Kamal M.H. (1995): An analytical solution of MHD flow of dusty fluids between two infinite parallel plates. - J. of Eng. and App. Sci., vol.42, No.2, pp.207.
- Kasiviswanathan S.R. and Gandhi M.V. (1992): A class of exact solutions for the magnetohydrodynamic flow of a micropolar fluid. - Int. J. Eng. Sci., vol.30, pp.409.
- Lukaszewicz G. (1999): Micropolar fluids - theory and applications. - Boston: Burkhauser.
- Nigam S.D. and Singh S.N. (1960): Heat transfer by laminar flow between parallel plates under the action of transverse magnetic field. - Quart. J. Mech. Appl. Math., vol.13, pp.85.
- Sanchita Ghosh and Ghosh A.K. (2004): On hydromagnetic Channel flow of a particulate suspension induced by rectified sine pulses. - J. of the Phy. Soc.of Japan, vol.73, No.6, pp.1506.
- Seddeek M.A. (2001): Effects of Hall and ion-slip currents on magneto-micropolar fluid and heat transfer over a non-isothermal stretching sheet with suction and blowing. - Proc. R. Soc. Lond. A, vol.457, pp.3039.
- Soundalgekar V.M., Vighnesam N.V. and Takhar H.S. (1979): Hall and ion-slip effects in MHD Coutte flow with heat transfer. - IEEE Transactions on Plasma Sci., vol.7, pp.178.
- Sutton G.W. and Sherman A. (1965): Engineering Magnetohydrodynamics. - New York: McGraw-Hill.
- Tani I. (1962): Steady flow of conducting fluids in channels under transverse magnetic fields, with consideration of Hall effects. - J. of Aerospace Scie., vol.29, pp.297.
- Tao L.N. (1960): Magnetohydrodynamic effects on the formation of Couette flow. - J Aerospace Sci, vol.27, pp.334.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0035-0016