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Double diffusive MHD squeezing copper water nanofluid flow between parallel plates filled with porous medium and chemical reaction

Chandrapushpam T. (Department of Mathematics, Nehru Arts and Science College, Coimbatore, India)
M. Bhuvaneswari (Department of Mathematics, Kongunadu Polytechnic College, Dindugul, India)
Sivasankaran Sivanandam (Department of Mathematics, Mathematical Modelling and Applied Computation Research Group, King Abdulaziz University, Jeddah, Saudi Arabia)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 20 November 2023

Issue publication date: 27 February 2024

74

Abstract

Purpose

This paper aims to explore the double diffusive magneto-hydrodynamic (MHD) squeezed flow of (Cu–water) nanofluid between two analogous plates filled with Darcy porous material in existence of chemical reaction and external magnetic field.

Design/methodology/approach

The governing nonlinear equations are transformed into ordinary differential equations by means of similarity transforms, and the coupled mass and heat transference equations are resolved analytically with the application of differential transform method (DTM). The effects of different relevant parameters on velocity, temperature and concentration, including the squeeze number, magnetic parameter, Biot number, Darcy number and chemical reaction parameter, are illustrated with figures. In addition, for various parameters, the local skin friction coefficient, local Nusselt number and local Sherwood number are computed and are graphically displayed.

Findings

It is observed that the squeeze number has a direct relationship with Sherwood number and an inverse relationship with skin friction as Biot number increases. With enhanced Biot numbers, the temperature value increases during both squeeze and non-squeeze moments, but the temperature values are higher for squeeze moments compared to the other case.

Practical implications

This research has potential applications in various large-scale enterprises that might benefit from increased productivity.

Social implications

The results are useful to thermal science community.

Originality/value

Unique and valuable insights are provided by studying the impact of chemical reaction on double diffusive MHD squeezing copper–water nanofluid flow between parallel plates filled with porous medium. In addition, this research has potential applications in various large-scale enterprises that might benefit from increased productivity.

Keywords

Acknowledgements

Conflict of interest: There is no conflict of interest.

Citation

T., C., Bhuvaneswari, M. and Sivanandam, S. (2024), "Double diffusive MHD squeezing copper water nanofluid flow between parallel plates filled with porous medium and chemical reaction", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 34 No. 3, pp. 1151-1169. https://doi.org/10.1108/HFF-05-2023-0277

Publisher

:

Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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