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Numerical study of heat source/sink effects on dissipative magnetic nanofluid flow from a non-linear inclined stretching/shrinking sheet

Beg, OA; Thumma, T; Kadir, A

Numerical study of heat source/sink effects on dissipative magnetic nanofluid flow from a non-linear inclined stretching/shrinking sheet Thumbnail


Authors

T Thumma



Abstract

This paper numerically investigates radiative magnetohydrodynamic mixed convection boundary layer flow of nanofluids over a nonlinear inclined stretching/shrinking sheet in the presence of heat source/sink and viscous dissipation. The Rosseland approximation is adopted for thermal radiation effects and the Maxwell-Garnetts and Brinkman models are used for the effective thermal conductivity and dynamic viscosity of the nanofluids respectively. The governing coupled nonlinear momentum and thermal boundary layer equations are rendered into a system of ordinary differential equations via local similarity transformations with appropriate boundary conditions. The non-dimensional, nonlinear, well-posed boundary value problem is then solved with the Keller box implicit finite difference scheme. The emerging thermo-physical dimensionless parameters governing the flow are the magnetic field parameter, volume fraction parameter, power-law stretching parameter, Richardson number, suction/injection parameter, Eckert number and heat source/sink parameter. A detailed study of the influence of these parameters on velocity and temperature distributions is conducted. Additionally the evolution of skin friction coefficient and Nusselt number values with selected parameters is presented. Verification of numerical solutions is achieved via benchmarking with some limiting cases documented in previously reported results, and generally very good correlation is demonstrated. This investigation is relevant to fabrication of magnetic nanomaterials and high temperature treatment of magnetic nano-polymers.

Citation

Beg, O., Thumma, T., & Kadir, A. (2017). Numerical study of heat source/sink effects on dissipative magnetic nanofluid flow from a non-linear inclined stretching/shrinking sheet. Journal of Molecular Liquids, 232, 159-173. https://doi.org/10.1016/j.molliq.2017.02.032

Journal Article Type Article
Acceptance Date Feb 11, 2017
Online Publication Date Feb 16, 2017
Publication Date Apr 1, 2017
Deposit Date Feb 13, 2017
Publicly Available Date Feb 16, 2018
Journal Journal of Molecular Liquids
Print ISSN 0167-7322
Publisher Elsevier
Volume 232
Pages 159-173
DOI https://doi.org/10.1016/j.molliq.2017.02.032
Publisher URL http://dx.doi.org/10.1016/j.molliq.2017.02.032
Related Public URLs https://www.journals.elsevier.com/journal-of-molecular-liquids/

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E__USIR repository_j molecular lqiuids FEB 13TH 2017 UPLOAD_accepted J MOLECULAR LQIUIDS magnetized nanofluid shrinking sheet FEB 11TH 2017.pdf (2.7 Mb)
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