Turkish Journal of Computer and Mathematics Education
Journal license

Journal

Turkish Journal of Computer and Mathematics Education


Volume
& Issue

Volume 13, Issue 3


Published
on


Pages

1043-1058


DOI

Article

Semi analytical solution of MHD Non-aligned Stagnation-point flow of Nanofluid over a Stretching Surface in a Porous Medium with a Convective Boundary Condition


Authors

Asha S. K* Affiliation:
Department of Mathematics, Karnatak University, Dharwad, Karantaka, India
and Gayitri Mali Affiliation:
Department of Mathematics, Karnatak University, Dharwad, Karantaka, India


Abstract

The stagnation-point flow over a stretched surface is concerned in many industrial processes such as soft sheet extrusion, metal spinning, and paper production. On the account of these possible engineering applications, the study of stagnation-point flows has received a lot of attention. In the present paper, the non -aligned stagnation-point flow has found to be interesting and innovative in the analysis of viscous nanofluid over stretching surface with a convective boundary condition in presence of porous medium and magnetic effect. The suitable similarity transformation is utilized for the reduction of a set of governing equations, which are sol ved by using the differential transformation method (DTM) with the aid of MAPLE software . The effect of different physical parameters on flow is shown with the help of graphs The skin friction, the Nusselt number, and Sherwood number are tabulated. Further, velocity, temperature, and nanoparticle volume fraction profiles are shown graphically and physical parameters are discussed. The comparison of the obtained results with a fourth-order Runge–Kutta–Fehlberg integration scheme with shooting technique is made.


Keywords

Non-aligned stagnation-point flow, stretching surface, porous medium, magnetic effect


Citation

K, A. S. & Mali, G. (2022). Semi analytical solution of MHD non-aligned stagnation-point flow of nanofluid over a stretching surface in a porous medium with a convective boundary condition. Turkish Journal of Computer and Mathematics Education, 13(3), 1043–1058.

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