Numerical Solution of MHD Flow of Micropolar Fluid with Heat and Mass Transfer towards a Stagnation Point on a Vertical Plate
- 1 Department of Mathematics, Faculty of Education, Ain Shams University, Cairo, Egypt
- 2 Department of Mathematics, Faculty of Education, Ain Shams University, Cairo, Egypt
- 3 Department of Mathematics, Faculty of Education, Ain Shams University, Cairo, Egypt
- 4 Department of Engineering Mathematics and Physics, Faculty of Engineering, El-Fayoum University, El-Fayoum, Egypt
- 5 Department of Mathematics, Faculty of Education, Ain Shams University, Cairo, Egypt
Abstract
The paper investigates the numerical solution of problem of magnetohydrodynamic (MHD) micropolar fluid flow with heat and mass transfer towards a stagnation point on a vertical plate. In this study, we consider both strong concentrations (n = 0) and weak concentrations (n = 1/2). The governing equations have been transformed into nonlinear ordinary differential equations by applying the similarity transformation and have been solved numerically by using the finite difference method (FDM) and analytically by using (DTM). The effects of various governing parameters, namely, material parameter, radiation parameter, magnetic parameter, Prandtl number, Schmidt number, chemical reaction parameter and Soret number on the velocity, microrotation, temperature and concentration have been computed and discussed in detail through some figures and tables. In order to verify the accuracy of the present results, we have compared these results with the analytical solutions by using the differential transform method (DTM) and the multi-step differential transform method (MDTM). It is observed that this approximate numerical solution is in good agreement with the analytical solution.
- Hiemenz, K. (1911) Die grenzschicht an einem in dem gleichformingen ussigkeitsstrom eingetauchten gerade kreiszylinder. Dingler Polytechnic Journal, 326, 321-340.
- Homann, F. (1936) Der einuss grosser zahigkeit bei der stromung um den zylinder und umdie kugel. Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte Mathematik und Mechanik, 16, 153-164. http://dx.doi.org/10.1002/zamm.19360160304
- Wang, C.Y. (1987) Impinging Stagnation Flows. Physics of Fluids, 30, 915-917. http://dx.doi.org/10.1063/1.866345
- Ariel, P.D. (1994) Hiemenz ow in hydromagnetics. Acta Mechanica, 103, 31-43. http://dx.doi.org/10.1007/BF01180216
- Mahapatra, T.R. and Gupta, A.S. (2001) Magnetohydrodynamic Stagnation Point Flow towards a Stretching Sheet. Acta Mechanica, 152, 191-196. http://dx.doi.org/10.1007/BF01176953
- Ishak, A., Nazar, R. and Pop, I. (2008) Magnetohydrodynamics (MHD) Flow of a Micropolar Fluid towards a Stagnation Point on a Vertical Surface. Computers and Mathematics with Applications, 56, 3188-3194. http://dx.doi.org/10.1016/j.camwa.2008.09.013
- Kumar, L., Singh, B., Kumar, L. and Bhargava, R. (2011) Finite Element Solution of MHD Flow of Micropolar Fluid towards a Stagnation Point on a Vertical Stretching Sheet. International Journal of Applied Mathematics and Mechanics, 7, 14-30.
- Ishak A., Nazar R. and Pop, I. (2006) Mixed Convection Boundary Layers in the Stagnation Point Flow toward a Stretching Vertical Sheet. Meccanica, 41, 509-518. http://dx.doi.org/10.1007/s11012-006-0009-4
- Eringen, A.C. (2001) Microcontinuum Field Theories. II: Fluent Media. Springer, New York.
- Ramachandran, N., Chem, T.S. and Armaly, B.F. (1988) Mixed Convection in a Stagnation Flows Adjacent to a Vertical Surfaces. Journal of Heat Transfer, 110, 373-377. http://dx.doi.org/10.1115/1.3250494
- Hassanien, I. and Gorla, R.S.R. (1990) Combined Forced and Free Convection in Stagnation Flows of Micropolar Fluids over Vertical Non-Isothermal Surfaces. International Journal of Engineering Science, 28, 783-792. http://dx.doi.org/10.1016/0020-7225(90)90023-C
- Devi, C.D.S., Takhar, H.S. and Nath, G. (1991) Unsteady Mixed Convection Flow in Stagnation Region Adjacent to a Vertical Surface. Heat and Mass Transfer, 26, 71-79. http://dx.doi.org/10.1007/bf01590239
- Lok, Y.Y., Amin, N., Campean, D. and Pop, I. (2005) Steady Mixed Convection Flow of a Micropolar Fluid Near the Stagnation Point on a Vertical Surface. International Journal of Numerical Methods for Heat & Fluid Flow, 15, 654-670. http://dx.doi.org/10.1108/09615530510613861