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An analysis of hall currents on couple stress fluid heated from below with magnetic field

W. Stanly (Department of Mathematics, Pope John Paul II College of Education, Puducherry, India)
R. Vasanthakumari (Department of Mathematics, Kanchi Mamunivar Centre for PG Studies, Puducherry, India)

World Journal of Engineering

ISSN: 1708-5284

Article publication date: 13 January 2022

Issue publication date: 30 August 2022

30

Abstract

Purpose

This study aims to focus on the effect of hall currents on the thermal stability of a couple-stress fluid with a uniform horizontal magnetic field.

Design/methodology/approach

The thermal perturbation method is used for the analytical solution. The analysis is administered within the framework of linear stability theory and normal mode technique on the convection for a fluid layer contained between two boundaries for which an exact solution is obtained.

Findings

For the case of stationary convection, a dispersion relation governing the effect of hall currents magnetic field and couple stress are derived. Results from the current study concluded that magnetic field has stabilizing effect whereas hall currents are found to have a destabilizing effect on the system. Couple stress, however, has a dual character in contrast to its stabilizing effect in the absence of hall currents. The Oscillatory modes are introduced due to the presence of a magnetic field in the system. Graphs are plotted by giving numerical values to the parameters to depict the stability characteristics in each case.

Originality/value

This research paper is new and original.

Keywords

Acknowledgements

The authors are grateful to the reviewers and editors for their useful comments and valuable suggestions too.

Citation

Stanly, W. and Vasanthakumari, R. (2022), "An analysis of hall currents on couple stress fluid heated from below with magnetic field", World Journal of Engineering, Vol. 19 No. 5, pp. 717-725. https://doi.org/10.1108/WJE-08-2021-0508

Publisher

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Emerald Publishing Limited

Copyright © 2021, Emerald Publishing Limited

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