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The comprehensive analysis of magnetohydrodynamic Casson fluid flow with rectangular porous medium through expanding/contracting channel

Ali Ahmadi Azar (Department of Mechanical Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran)
Payam Jalili (Department of Mechanical Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran)
Bahram Jalili (Department of Mechanical Engineering, North Tehran Branch, Islamic Azad University, Tehran, Iran)
D.D. Ganji (Department of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran)

Multidiscipline Modeling in Materials and Structures

ISSN: 1573-6105

Article publication date: 30 October 2024

Issue publication date: 2 January 2025

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Abstract

Purpose

This study examines fluid flow within a rectangular porous medium bounded by walls capable of expansion or contraction. It focuses on a non-Newtonian fluid with Casson characteristics, incompressibility, and electrical conductivity, demonstrating temperature-dependent impacts on viscosity.

Design/methodology/approach

The flow is two-dimensional, unsteady, and laminar, influenced by a small electromagnetic force and electrical conductivity. The Hybrid Analytical and Numerical Method (HAN method) resolves the constitutive differential equations.

Findings

The fluid’s velocity is influenced by the Casson parameter, viscosity variation parameter, and resistive force, while the fluid’s temperature is affected by the radiation parameter, Prandtl number, and power-law index. Increasing the Casson parameter from 0.1 to 50 results in a 4.699% increase in maximum fluid velocity and a 0.123% increase in average velocity. Viscosity variation from 0 to 15 decreases average velocity by 1.42%. Wall expansion (a from −4 to 4) increases maximum velocity by 19.07% and average velocity by 1.09%. The average fluid temperature increases by 100.92% with wall expansion and decreases by 51.47% with a Prandtl number change from 0 to 7.

Originality/value

Understanding fluid dynamics in various environments is crucial for engineering and natural systems. This research emphasizes the critical role of wall movements in fluid dynamics and offers valuable insights for designing systems requiring fluid flow and heat transfer. The study presents new findings on heat transfer and fluid flow in a rectangular channel with two parallel, porous walls capable of expansion and contraction, which have not been previously reported.

Keywords

Citation

Ahmadi Azar, A., Jalili, P., Jalili, B. and Ganji, D.D. (2025), "The comprehensive analysis of magnetohydrodynamic Casson fluid flow with rectangular porous medium through expanding/contracting channel", Multidiscipline Modeling in Materials and Structures, Vol. 21 No. 1, pp. 68-97. https://doi.org/10.1108/MMMS-07-2024-0179

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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