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Numerical study on the behavior of a polymeric MHD nanofluid: entropy optimization and thermal analysis

Razi Khan (Department of Mathematics and Physics, University of Campania “Luigi Vanvitelli”, Caserta, Italy)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 10 September 2024

Issue publication date: 25 September 2024

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Abstract

Purpose

Analyzing and reducing entropy generation is useful for enhancing the thermodynamic performance of engineering systems. This study aims to explore how polymers and nanoparticles in the presence of Lorentz forces influence the fluid behavior and heat transfer characteristics to lessen energy loss and entropy generation.

Design/methodology/approach

The dispersion model is initially used to examine the behavior of polymer additives over a magnetized surface. The governing system of partial differential equations (PDEs) is subsequently reduced through the utilization of similarity transformation techniques. Entropy analysis is primarily performed through the implementation of numerical computations on a non-Newtonian polymeric FENE-P model.

Findings

The numerical simulations conducted in the presence of Lorentz forces provide significant insights into the consequences of adding polymers to the base fluid. The findings suggest that such an approach minimizes entropy in the flow region. Through the utilization of polymer-MHD (magnetohydrodynamic) interactions, it is feasible to reduce energy loss and improve the efficiency of the system.

Originality/value

This study’s primary motivation and novelty lie in examining the significance of polymer additives as agents that reduce entropy generation on a magnetic surface. The author looks at how nanofluids affect the development of entropy and the loss of irreversibility. To do this, the author uses the Lorentz force, the Soret effect and the Dufour effect to minimize entropy. The findings contribute to fluid mechanics and thermodynamics by providing valuable insights for engineering systems to increase energy efficiency and conserve resources.

Keywords

Acknowledgements

The author acknowledges Professor Francesca Crispo and Professor Adeel Ahmad for their valuable guidance and support. The author also acknowledges the Department of Mathematics and Physics, University of Campania, for providing the essential research facilities.

Citation

Khan, R. (2024), "Numerical study on the behavior of a polymeric MHD nanofluid: entropy optimization and thermal analysis", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 34 No. 10, pp. 3882-3903. https://doi.org/10.1108/HFF-02-2024-0144

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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