Title of article :
Multiple Solutions for Slip Effects on Dissipative MagnetoNanofluid Transport Phenomena in Porous Media: Stability Analysis
Author/Authors :
Gupta ، Yogesh Department of Mathematics - Jaypee Institute of Information Technology , Rana ، Puneet Department of Mathematics - Jaypee Institute of Information Technology , Beg ، Osman Anwar School of Computing, Science and Engineering - University of Salford , Kadir ، Ali School of Computing, Science Engineering - University of Salford
Abstract :
In the present paper, a numerical investigation of transport phenomena is considered in electricallyconducting nanofluid flow within a porous bed utilizing Buongiorno’s transport model and RungeKuttaFehlberg fourthfifth order method. Induced flow by nonisothermal stretching/shrinking sheet along with magnetic field impact, dissipation effect, and slip conditions at the surface are also included. The numerical results show the existence of two branches of the solution for a selected range of the governing parameters. The physical significance of both branches of solutions is ensured by performing a stability analysis in which a linearized eigenvalue problem is solved. The multiple regression analysis with the help of MATLAB LinearModel.fit package has also been conducted to estimate the dependence of the parameters on Nusselt number.
Keywords :
MHD , Nanofluid , Shrinking sheet , Dual solutions , Porous medium , Eigenvalues
Journal title :
Journal of Applied and Computational Mechanics
Journal title :
Journal of Applied and Computational Mechanics