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Effect of Heat Generation and Thermal Radiation on the Slip Flow of Time Dependent Elastico-viscous Maxwell Nanofluid Flow Over a Porous Stretching Inclined Surface
Author(s) -
Md. Abdus Samad,
M. Enamul Karim
Publication year - 2020
Publication title -
the dhaka university journal of science
Language(s) - English
Resource type - Journals
eISSN - 2408-8528
pISSN - 1022-2502
DOI - 10.3329/dujs.v68i1.54592
Subject(s) - nusselt number , nanofluid , mechanics , thermal radiation , sherwood number , slip (aerodynamics) , boundary value problem , heat generation , ordinary differential equation , partial differential equation , flow (mathematics) , shooting method , thermodynamics , materials science , mathematics , physics , mathematical analysis , differential equation , heat transfer , reynolds number , turbulence
The present paper deals with the numerical analysis of the combined effect of heat generation and thermal radiation on the flow of a time dependent elastico-viscous Maxwell nanofluid passing over a stretching porous inclined surface with slip boundary. Appropriate similarity transformations are used to decorate the governing equations into a set of ordinary non-linear differential equations. The coupled ordinary equations are solved numerically using the Nachtsheim-Swigert shooting method together with the Runge-Kutta iterative technique for various values of the flow control parameters. In addition, the built-in function bvp4c of MATLAB is used to enhance the consistency of numerical results. The numerical results, demonstrated graphically, are described from the physical point of view. Finally, the effects of relevant parameters on the local skin-friction coefficient, the local Nusselt number, and the local Sherwood number, which are of material concern, are demonstrated in tabular form. Dhaka Univ. J. Sci. 68(1): 19-28, 2020 (January)

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