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Mhd Natural Convection Nanofluid Flow in a Heat Exchanger: Effects of Brownian Motion and Thermophoresis for Nanoparticles Distribution

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Date

2021

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Elsevier

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GOLD

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Abstract

The free convection of Cu-water nanofluid is simulated and investigated inside a square heat exchanger chamber in the presence of MHD magnetic field. The Buongiorno model with the effects of Brownian and thermophoresis motion is considered to nanoparticles distribution inside the chamber. The geometry consists of a square chamber with two cylinders on the right and left sides as heater and cooler in order to create the buoyancy force, respectively. These cylinders represent hot and cold pipes, and the walls of the chamber are heat and mass insulation. the FVM with SIMPLE algorithm are used for velocity and pressure coupling. In current two-phase simulation, the effects of Rayleigh number, Hartmann number, inclination angle of chamber and volume fraction on streamline contours, isothermal lines, Lorentz force lines, nanoparticle distribution and Nusselt number are investigated. By modeling the motion of nanoparticles and evaluating it, a nanoparticle transport zone was observed. The diffusion effects of thermophoresis were significant in this zone. The nanoparticles were thrown from the hot cylinder to the cold cylinder. The application of a magnetic field enlarged the nanoparticle transport zone. However, increasing the Rayleigh number and decreasing the inclination angle of the enclosure caused the nanoparticles to disperse evenly.

Description

Togun, Hussein/0000-0002-4440-4598; Ayed, Hamdi/0000-0001-6108-5093; Dahari, Mahidzal/0000-0002-0432-5596

Keywords

Buongiorno Model, Mhd, Heat Exchanger, Heater/Cooler, Natural Convection, Cu Nanoparticles, Heat Transfer Enhancement in Nanofluids, Thermophoresis, MHD, Buongiorno model, Turbulent Flows and Vortex Dynamics, Biomedical Engineering, Computational Mechanics, FOS: Mechanical engineering, TJ Mechanical engineering and machinery, Nanofluid, FOS: Medical engineering, Mechanics, Convection, TP Chemical technology, TK Electrical engineering. Electronics Nuclear engineering, Reynolds number, Nanofluids, Engineering, Nanoparticle, Solar Air Heater Heat Transfer Analysis, Nanotechnology, Cu nanoparticles, FOS: Nanotechnology, Mechanical Engineering, Physics, Rayleigh number, Engineering (General). Civil engineering (General), Heat Transfer, Materials science, 620, Turbulence, Heat exchanger, Natural convection, Hartmann number, Physical Sciences, Heater/cooler, TA1-2040, Nusselt number

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Fields of Science

02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

Citation

Cao, Yan...et al. (2021). "MHD natural convection nanofluid flow in a heat exchanger: Effects of Brownian motion and thermophoresis for nanoparticles distribution", Case Studies in Thermal Engineerin, Vol. 28.

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Q1

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OpenCitations Citation Count
23

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Case Studies in Thermal Engineering

Volume

28

Issue

Start Page

101394

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Citations

CrossRef : 30

Scopus : 31

Captures

Mendeley Readers : 25

SCOPUS™ Citations

31

checked on Feb 03, 2026

Web of Science™ Citations

25

checked on Feb 03, 2026

Page Views

3

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2.12525283

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3

GOOD HEALTH AND WELL-BEING
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6

CLEAN WATER AND SANITATION
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AFFORDABLE AND CLEAN ENERGY
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