Journal of Petroleum Science & Engineering2022,Vol.20810.DOI:10.1016/j.petrol.2021.109734

Simulation of hybrid nanofluid flow within a microchannel heat sink considering porous media analyzing CPU stability

Raed Qahiti Jinyuan Wang Yi-Peng Xu
Journal of Petroleum Science & Engineering2022,Vol.20810.DOI:10.1016/j.petrol.2021.109734

Simulation of hybrid nanofluid flow within a microchannel heat sink considering porous media analyzing CPU stability

Raed Qahiti 1Jinyuan Wang 2Yi-Peng Xu3
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作者信息

  • 1. Department of Mathematics, Faculty of Science, Jazan University, Saudi Arabia
  • 2. Business School Yantai Nonshan University, ShanDong 265713, China
  • 3. School of Mathematical Sciences, Tiangong University, Tianjin, 300387, China
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Abstract

Current article aims to numerically scrutinize and compare the forced convection in three different configurations of a 3D heat sink. Two models of porous were designed aiming to evaluate the effects of nanomaterial and metallic foam to the conventional solid heat sink on thermal performance. In these two models, porous material with the same volume fraction was located in two different positions to have different contact areas with the solid. MWCNT-Fe3O4 hybrid nanofluid has been utilized as coolant working fluid. Validations were carried out in the critical case of 47 W for pure water through comparison with previous experimental work in which the whole surface of the CPU is covered with porous media. According to the results, at the constant Reynolds number, the heat sinks, which are consist of metallic foam, have better cooling performance and are able to decrease the surface temperature of heat sink more.

Key words

Processor cooling/MicroChannel heat sink/Aluminium foam/Porous media/Hybrid nanoparticle/CPU stability And lifetime

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出版年

2022
Journal of Petroleum Science & Engineering

Journal of Petroleum Science & Engineering

ISSN:0920-4105
被引量56
参考文献量72
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