Analytical analysis of impacts of nanoparticle shapes and uncertainty in thermophysical properties on optimum operating conditions of MHD nanofluid flow in a microchannel filled with porous medium
Author:
Publisher
Springer Science and Business Media LLC
Subject
Physical and Theoretical Chemistry,Condensed Matter Physics,Polymers and Plastics,Materials Chemistry
Link
https://link.springer.com/content/pdf/10.1007/s10973-023-12678-0.pdf
Reference49 articles.
1. Ramezanpour M, Siavashi M, Raeni AQ, Blunt MJ. Pore-scale simulation of nanoparticle transport and deposition in a microchannel using a Lagrangian approach. J Mol Liq. 2022;355: 118948. https://doi.org/10.1016/j.molliq.2022.118948.
2. Soumya DO, Gireesha BJ, Venkatesh P. Tangent-hyperbolic nanoliquid flow in a microchannel, thermal and irreversibility rate analysis. Waves Random Complex Media. 2022. https://doi.org/10.1080/17455030.2022.2108157.
3. Izadi A, Siavashi M, Rasam H, Xiong Q. MHD enhanced nanofluid mediated heat transfer in porous metal for CPU cooling. Appl Therm Eng. 2020;168: 114843. https://doi.org/10.1016/j.applthermaleng.2019.114843.
4. Qasemian A, Moradi F, Karamati A, Keshavarz A, Shakeri A. Hydraulic and thermal analysis of automatic transmission fluid in the presence of nano-particles and twisted tape: an experimental and numerical study. J Central South Univ. 2021;28:3404–17. https://doi.org/10.1007/s11771-021-4864-x.
5. Khoshtarash H, Siavashi M, Ramezanpour M, Blunt MJ. Pore-scale analysis of two-phase nanofluid flow and heat transfer in open-cell metal foams considering Brownian motion. Appl Therm Eng. 2023;221: 119847. https://doi.org/10.1016/j.applthermaleng.2022.119847.
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