Computational Simulation and Parametric Analysis of the Effectiveness of Ternary Nano-composites in Improving Magneto-Micropolar Liquid Heat Transport Performance

Author:

Alwawi Firas A.1ORCID,Swalmeh Mohammed Z.2ORCID,Hamarsheh Abdulkareem Saleh1ORCID

Affiliation:

1. Department of Mathematics, College of Sciences and Humanities in Al-Kharj, Prince Sattam bin Abdulaziz University, Al-Kharj 11942, Saudi Arabia

2. Faculty of Arts and Sciences, Aqaba University of Technology, Aqaba 77110, Jordan

Abstract

This numerical analysis aims to observe and analyze the combined convection characteristics of the micropolar tri-hybrid nano-liquid that moves around a cylindrical object, and, in addition, to compare its thermal behavior to that of hybrid and mono nano-fluids. For this purpose, the problem is modeled by developing the Tiwari and Das models, then the governing model is converted into dimensionless expressions, and finally, the problem is solved using the Keller box approximation. The current findings are compared with previously published results to show that the present method is sufficiently accurate for physical and engineering applications. By examining and analyzing the extent to which skin friction, the Nusselt number, velocity, angular velocity, and temperature are affected by some critical factors, the following points are revealed: A greater value of the micropolar and magnetic factors can result in curtailing the heat transmission rate, velocity, and angular velocity. Higher values of the mixed convection factor can contribute to a better rate of energy transfer and can grant the micropolar tri-hybrid nano-liquid a higher velocity. Regardless of the influencing factors, the maximum value of all considered physical groups is achieved by using ternary hybrid nano-liquids.

Funder

Deputyship for Research & Innovation, Ministry of Education in Saudi Arabia

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference64 articles.

1. Simple microfluids;Eringen;Int. J. Eng. Sci.,1964

2. Theory of thermomicrofluids;Eringen;J. Math. Anal. Appl.,1972

3. On stagnation point flow of a micro polar nanofluid past a circular cylinder with velocity and thermal slip;Abbas;Res. Phys.,2018

4. Heat transfer flow of Cu-water and Al2O3-water micropolar nanofluids about a solid sphere in the presence of natural convection using Keller-box method;Swalmeh;Res. Phys.,2018

5. Effects of mixed convection on methanol and kerosene oil based micropolar nanofluid containing oxide nanoparticles;Alkasasbeh;CFD Lett.,2019

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