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Significance of Nanoparticles Aggregation on the Dynamics of Rotating Nanofluid Subject To Gyrotactic Microorganisms, and Lorentz Force

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Date

2022

Journal Title

Journal ISSN

Volume Title

Publisher

Nature Portfolio

Open Access Color

HYBRID

Green Open Access

Yes

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Publicly Funded

No
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Top 10%
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Average
Popularity
Top 10%

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Abstract

The significance of nanoparticle aggregation, Lorentz and Coriolis forces on the dynamics of spinning silver nanofluid flow past a continuously stretched surface is prime significance in modern technology, material sciences, electronics, and heat exchangers. To improve nanoparticles stability, the gyrotactic microorganisms is consider to maintain the stability and avoid possible sedimentation. The goal of this report is to propose a model of nanoparticles aggregation characteristics, which is responsible to effectively state the nanofluid viscosity and thermal conductivity. The implementation of the similarity transforQ1m to a mathematical model relying on normal conservation principles yields a related set of partial differential equations. A well-known computational scheme the FEM is employed to resolve the partial equations implemented in MATLAB. It is seen that when the effect of nanoparticles aggregation is considered, the temperature distribution is enhanced because of aggregation, but the magnitude of velocities is lower. Thus, showing the significance impact of aggregates as well as demonstrating themselves as helpful theoretical tool in future bioengineering and industrial applications.

Description

Ali Sewag, Bagh -E-/0000-0002-5501-4181

Keywords

Computational Mechanics, Nanofluid, Lorentz force, Engineering, Nanoparticle, Nanotechnology, Fluid Flow and Transfer Processes, Viscosity, Physics, Q, R, Thermal Conductivity, Partial differential equation, Chemical Engineering, Microfluidic Rheometry, Physical Sciences, Medicine, Thermodynamics, Sedimentation, Heat Transfer Enhancement in Nanofluids, Composite material, Finite element method, Silver, Science, Turbulent Flows and Vortex Dynamics, Biomedical Engineering, FOS: Medical engineering, Mechanics, Mathematical analysis, Quantum mechanics, Article, Nanofluids, FOS: Mathematics, Biology, FOS: Chemical engineering, FOS: Nanotechnology, Paleontology, Zeta potential, Models, Theoretical, Computer science, Materials science, Magnetic field, Rheology of Complex Fluids and Polymers, Hydrodynamics, Nanoparticles, Sediment, Mathematics

Fields of Science

02 engineering and technology, 01 natural sciences, 0210 nano-technology, 0103 physical sciences

Citation

Ali, Bagh;...et.al. (2022). "Significance of nanoparticles aggregation on the dynamics of rotating nanofluid subject to gyrotactic microorganisms, and Lorentz force", Scientific Reports, Vol.12, No.1.

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
6

Source

Scientific Reports

Volume

12

Issue

1

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End Page

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Scopus : 3

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Mendeley Readers : 9

SCOPUS™ Citations

5

checked on Feb 26, 2026

Web of Science™ Citations

5

checked on Feb 26, 2026

Page Views

1

checked on Feb 26, 2026

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0.7205

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