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Bioconvective electromagnetic nanofluid transport from a wedge geometry : simulation of smart electro-conductive bio-nano-polymer processing

Zohra, FT; Uddin, MJ; Ismail, AIM; Beg, OA

Bioconvective electromagnetic nanofluid transport from a wedge geometry : simulation of smart electro-conductive bio-nano-polymer processing Thumbnail


Authors

FT Zohra

MJ Uddin

AIM Ismail



Abstract

A mathematical model is presented for steady, two-dimensional, stagnation-point flow, heat, mass, and micro-organism transfer in a viscous, incompressible, bioconvective, electromagnetic nanofluid along a wedge with Stefan blowing effects, hydrodynamic slip, and multiple convective boundary conditions. Gyrotactic micro-organisms are present in the nanofluid and bioconvection arises, characterized by micro-organisms swimming under a competing torque. Similarity transformations are used to render the system of governing partial differential equations into a system of coupled similarity equations. The transformed equations are solved numerically with the BVP5C method. The impact of emerging parameters on dimensionless velocity, temperature, magnetic induction function, nanoparticle volume fraction, and density of motile micro-organisms is studied graphically. Furthermore, the responses of the local skin friction, local Nusselt number, local Sherwood number, and the wall gradient of density of motile micro-organism number to variation in these parameters are elaborated. Validation of solutions with previous studies based on special cases of the general model is included. The simulations are relevant to the processing of biological, electro-conductive nanomaterials and industrial hygienic coating systems exploiting combined electromagnetics, nano-systems, and microscopic, bio-propulsion mechanisms.

Citation

Zohra, F., Uddin, M., Ismail, A., & Beg, O. (2017). Bioconvective electromagnetic nanofluid transport from a wedge geometry : simulation of smart electro-conductive bio-nano-polymer processing. Heat Transfer - Asian Research, 47(1), 231-250. https://doi.org/10.1002/htj.21300

Journal Article Type Article
Acceptance Date Jun 5, 2017
Online Publication Date Aug 28, 2017
Publication Date Aug 28, 2017
Deposit Date Jun 5, 2017
Publicly Available Date Aug 28, 2018
Journal Heat Transfer-Asian Research
Print ISSN 1099-2871
Publisher Wiley
Volume 47
Issue 1
Pages 231-250
DOI https://doi.org/10.1002/htj.21300
Publisher URL http://dx.doi.org/10.1002/htj.21300
Related Public URLs http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1523-1496
Additional Information Funders : Universiti Sains Malaysia
Projects : ELECTROMAGNETIC BIO-NANO-POLYMER MODELLING
Grant Number: RU Grant 1001/PMATHS/811252

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HEAT TRANSFER ASIAN RESEARCH electromagnetic bioconvection nanopolymer slip processing ACCEPTED JUNE 5TH 2017.pdf (999 Kb)
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