EventsThe 1st International Online Conference on Mathematics and Applications
Published
This submission belongs to the session S12. Computational Mathematics of the event The 1st International Online Conference on Mathematics and Applications
Published date
15 Jun, 2023
Academic Editor
author-avatarJuan Torregrosa
Citation
M. Ferdows, Murtaza M.G., Anik Gomes, Md. Jahangir Alam, Tzirtzilakis E. E., Numerical Solution of The Effects of Variable Fluid Properties on Biomagnetic Fluid over an Unsteady Stretching Sheet, in Proceedings of The 1st International Online Conference on Mathematics and Applications, 1 May–15 May 2023, MDPI: Basel, Switzerland, doi: 10.3390/IOCMA2023-14399
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Numerical Solution of The Effects of Variable Fluid Properties on Biomagnetic Fluid over an Unsteady Stretching Sheet

Anik Gomes 3
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1. University of Dhaka, Bangladesh
2. Department of Mathematics, Comilla University, Cumilla-3506, Bangladesh
3. Department of Mathematics, Comilla University, Comilla-3506, Bangladesh
4. Research Group of Fluid Flow Modeling and Simulation, Department of Applied Mathematics, University of Dhaka, Dhaka-1000, Bangladesh.
5. Fluid Mechanics and Turbomachinery Laboratory, Department of Mechanical Engineering, University of the Peloponnese, 26334 Patras, Greece
Abstract

In this paper, the effects of various fluid properties on two dimensional unsteady Biomagnetic fluid flow (blood) and heat transfer over a stretching sheet under the appearance of magnetic dipole is investigated. The governing boundary layer equations are simplified by suitable transformation which are then solved by bvp4c function aaproach in MATLAB software. The results indicate that fluid velocity and temperature are greatly influenced for ferromagnetic interaction parameter. Where, for ferromagnetic number fluid velocity drops but temperature rises upward. It is also found that the coefficient of skin friction and Nusselt number increase with the increment values of thermal conductivity parameter. For certain parameter values, the results are also compared with previously published studies and found in acceptable agreement.

Keywords
Biomagnetic fluid
variable viscosity
variable thermal conductivity
magnetic field
unsteady
stretching sheet
skin friction coefficient
rate of heat transfer.
Manuscript
Finite Difference simulation on Biomagnetic Fluid Flow and Heat Transfer with Gold Nanoparticles towards a Shrinking Sheet in the presence of a Magnetic Dipole
Some basic inequalities on Riemannian manifolds equipped with metallic structure