Simulation of alumina/water manofluid flow in a micro-heatsink with wavy microchannels : impact of two-phase and single-phase nanofluid models

dc.contributor.authorKhetib, Yacine
dc.contributor.authorAbo-Dief, Hala M.
dc.contributor.authorAlanazi, Abdullah K.
dc.contributor.authorSaleem, Hussein A.
dc.contributor.authorSajadi, S. Mohammad
dc.contributor.authorSharifpur, Mohsen
dc.contributor.emailmohsen.sharifpur@up.ac.zaen_ZA
dc.date.accessioned2022-02-25T09:53:10Z
dc.date.available2022-02-25T09:53:10Z
dc.date.issued2021-10-18
dc.description.abstractIn this article, alumina/water nanofluid (NF) flow in a heatsink (H-S) with wavy microchannels (W-MCs) is simulated. The H-S is made of aluminum containing four similar parts. Each part has an inlet and outlet. Constant heat flux is applied on the bottom of the H-S. The study is based on two-phase (T-P) mixture and single-phase (S-P) models to determine the difference between these two types of simulations. FLUENT software and the control volume method were used for simulations. The volume control method is employed to solve equations. The effective variables include the volume fraction 0 < φ < 5% of alumina and Reynolds number (Re) 300 < Re < 1800. The maximum H-S bottom temperature, the required amount of pumping power (PP), the temperature uniformity, and the heat resistance of the H-S are the outputs studied to simulate the S-P and T-P models. The results show that the use of the T-P model has less error in comparison with the experimental data than the S-P model. An increment in the Re and φ reduces the maximum temperature (M-T) of the H-S. The S-P model, especially at a higher value of φ, leads to a lower M-T value than the T-P model. The S-P model shows a 0.5% greater decrease than the T-P model at the Reynolds number of 300 by enhancing the volume percentage of nanoparticles (NPs) from 1 to 5%. Temperature uniformity is improved with Re and φ. The reduction of H-S thermal resistance with Re and φ is the result of this study. Adding NPs to water, especially at higher amounts of φ, enhances the required PP. The T-P model predicts higher PP than the S-P one, especially at a high value of φ. The T-P model shows 4% more PP than the S-P model at Re 30 and a volume fraction of 4%.en_ZA
dc.description.departmentMechanical and Aeronautical Engineeringen_ZA
dc.description.librarianam2022en_ZA
dc.description.sponsorshipThe German Research Foundation (DFG) and Taif University, Taif, Saudi Arabia.en_ZA
dc.description.urihttp://www.frontiersin.org/Energy_Researchen_ZA
dc.identifier.citationKhetib, Y., Abo-Dief, H.M., Alanazi, A.K., Saleem, H.A., Sajadi, S.M. & Sharifpur, M. (2021) Simulation of Alumina/Water Nanofluid Flow in a Micro-Heatsink With Wavy Microchannels: Impact of Two-Phase and Single-Phase Nanofluid Models. Frontiers in Energy Research 9:760201. DOI: 10.3389/fenrg.2021.760201,en_ZA
dc.identifier.issn2296-598X (online)
dc.identifier.other10.3389/fenrg.2021.760201
dc.identifier.urihttp://hdl.handle.net/2263/84224
dc.language.isoenen_ZA
dc.publisherFrontiers Mediaen_ZA
dc.rights© 2021 Khetib, Abo-Dief, Alanazi, Saleem, Sajadi and Sharifpur. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY).en_ZA
dc.subjectNanofluiden_ZA
dc.subjectHeatsinken_ZA
dc.subjectTwo-phase mixture modelen_ZA
dc.subjectSingle-phase modelen_ZA
dc.subjectMicrochannelen_ZA
dc.subjectWavy microchannels (W-MCs)en_ZA
dc.subject.otherEngineering, built environment and information technology articles SDG-04
dc.subject.otherSDG-04: Quality education
dc.subject.otherEngineering, built environment and information technology articles SDG-06
dc.subject.otherSDG-06: Clean water and sanitation
dc.subject.otherEngineering, built environment and information technology articles SDG-07
dc.subject.otherSDG-07: Affordable and clean energy
dc.subject.otherEngineering, built environment and information technology articles SDG-09
dc.subject.otherSDG-09: Industry, innovation and infrastructure
dc.subject.otherEngineering, built environment and information technology articles SDG-12
dc.subject.otherSDG-12: Responsible consumption and production
dc.subject.otherEngineering, built environment and information technology articles SDG-13
dc.subject.otherSDG-13: Climate action
dc.titleSimulation of alumina/water manofluid flow in a micro-heatsink with wavy microchannels : impact of two-phase and single-phase nanofluid modelsen_ZA
dc.typeArticleen_ZA

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