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Unsteady reactive magnetic radiative micropolar flow, heat and mass transfer from an inclined plate with joule heating: a model for magnetic polymer processing

Shamshuddin, MD; Mishra, SR; Beg, OA; Kadir, A

Unsteady reactive magnetic radiative micropolar flow, heat and mass transfer from an inclined plate with joule heating: a model for magnetic polymer processing Thumbnail


Authors

MD Shamshuddin

SR Mishra

A Kadir



Abstract

Magnetic polymer materials processing involves many multi-physical and chemical effects. Motivated by such applications, in the present work a theoretical analysis is conducted of combined heat and mass transfer in unsteady mixed convection flow of micropolar fluid over an oscillatory inclined porous plate in a homogenous porous medium with heat source, radiation absorption and Joule dissipation. A first order homogenous chemical reaction model is used. The transformed non-dimensional boundary value problem is solved using a perturbation method and Runge-Kutta fourth order numerical quadrature (shooting technique). The emerging parameters dictating the transport phenomena are shown to be the gyro-viscosity micropolar material parameter, magnetic field parameter, permeability of the porous medium, Prandtl number, Schmidt number, thermal Grashof number, species Grashof number, thermal radiation-conduction parameter, heat absorption parameter, radiation absorption parameter, Eckert number, chemical reaction parameter and Eringen coupling number (vortex viscosity ratio parameter). The impact of these parameters on linear velocity, microrotation (angular velocity), temperature and concentration are evaluated in detail. Results for skin friction coefficient, couple stress coefficient, Nusselt number and Sherwood number are also included. Couple stress is observed to be reduced with stronger magnetic field. Verification of solutions is achieved with earlier published analytical results.

Citation

Shamshuddin, M., Mishra, S., Beg, O., & Kadir, A. (2018). Unsteady reactive magnetic radiative micropolar flow, heat and mass transfer from an inclined plate with joule heating: a model for magnetic polymer processing. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 233(4), 1246-1261. https://doi.org/10.1177/0954406218768837

Journal Article Type Article
Acceptance Date Mar 2, 2018
Online Publication Date Apr 10, 2018
Publication Date Apr 10, 2018
Deposit Date Mar 5, 2018
Publicly Available Date Mar 5, 2018
Journal Proceedings of the Institute of Mechanical Engineers Part C : Journal of Mechanical Engineering Science
Print ISSN 0954-4062
Electronic ISSN 2041-2983
Publisher SAGE Publications
Volume 233
Issue 4
Pages 1246-1261
DOI https://doi.org/10.1177/0954406218768837
Publisher URL http://dx.doi.org/10.1177/0954406218768837
Related Public URLs http://journals.sagepub.com/home/pic

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