LAPSE:2023.26517
Published Article
LAPSE:2023.26517
Investigation and Modeling of the Magnetic Nanoparticle Aggregation with a Two-Phase CFD Model
April 3, 2023
In this paper the magnetic nanoparticle aggregation procedure in a microchannel in the presence of external magnetic field is investigated. The main goal of the work was to establish a numerical model, capable of predicting the shape of the nanoparticle aggregate in a magnetic field without extreme computational demands. To that end, a specialized two-phase CFD model and solver has been created with the open source CFD software OpenFOAM. The model relies on the supposed microstucture of the aggregate consisting of particle chains parallel to the magnetic field. First, the microstructure was investigated with a micro-domain model. Based on the theoretical model of the particle chain and the results of the micro-domain model, a two-phase CFD model and solver were created. After this, the nanoparticle aggregation in a microchannel in the field of a magnet was modeled with the solver at different flow rates. Measurements with a microfluidic device were performed to verify the simulation results. The impact of the aggregate on the channel heat transfer was also investigated.
Keywords
Computational Fluid Dynamics, magnetic nanoparticle, microfluidics, OpenFOAM, rheology, two-phase solver
Suggested Citation
Pálovics P, Németh M, Rencz M. Investigation and Modeling of the Magnetic Nanoparticle Aggregation with a Two-Phase CFD Model. (2023). LAPSE:2023.26517
Author Affiliations
Pálovics P: Department of Electron Devices, Budapest University of Technology and Economics, Magyar tudósok krt. 2, Bld. Q, H-1117 Budapest, Hungary [ORCID]
Németh M: Department of Electron Devices, Budapest University of Technology and Economics, Magyar tudósok krt. 2, Bld. Q, H-1117 Budapest, Hungary [ORCID]
Rencz M: Department of Electron Devices, Budapest University of Technology and Economics, Magyar tudósok krt. 2, Bld. Q, H-1117 Budapest, Hungary [ORCID]
Journal Name
Energies
Volume
13
Issue
18
Article Number
E4871
Year
2020
Publication Date
2020-09-17
Published Version
ISSN
1996-1073
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Original Submission
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PII: en13184871, Publication Type: Journal Article
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LAPSE:2023.26517
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doi:10.3390/en13184871
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Apr 3, 2023
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