Effects of particle fouling and magnetic field on porous fin for improved cooling of consumer electronics
Author:
Affiliation:
1. Department of Biomedical and Electronics Engineering, Faculty of Engineering and InformaticsUniversity of Bradford Bradford United Kingdom
2. Department of Mechanical Engineering, Faculty of EngineeringUniversity of Lagos Lagos Nigeria
Publisher
Wiley
Subject
Fluid Flow and Transfer Processes,Condensed Matter Physics
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/htj.21638
Reference41 articles.
1. Investigation of Simultaneous Effects of Surface Roughness, Porosity, and Magnetic Field of Rough Porous Microfin Under a Convective–Radiative Heat Transfer for Improved Microprocessor Cooling of Consumer Electronics
2. Solution of the boundary layer flow of an Eyring-Powell non-Newtonian fluid over a linear stretching sheet by collocation method
3. Investigation on ethylene glycol Nano fluid flow over a vertical permeable circular cylinder under effect of magnetic field;Gholinia M;Res Phys,2018
4. A numerical investigation on ethylene glycol-titanium dioxide nanofluid convective flow over a stretching sheet in presence of heat generation/absorption
5. Transient thermal analysis and optimization of convective-radiative porous fin under the influence of magnetic field for efficient microprocessor cooling
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1. A CFD investigation of the design variables affecting the performance of finned-tube heat exchangers;Journal of Thermal Engineering;2023-08-04
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3. Erratum;Heat Transfer;2020-04-07
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