The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review

Cooling by impinging droplets has been the subject of several studies for decades and still is, and, in the last few years, the potential heat transfer enhancement obtained thanks to nanofluids’ use has received increased interest. Indeed, the use of high thermal conductivity fluids, such as nanoflu...

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Main Authors: Yunus Tansu Aksoy, Yanshen Zhu, Pinar Eneren, Erin Koos, Maria Rosaria Vetrano
Format: Article
Language:English
Published: MDPI AG 2021-12-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/1/80
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spelling doaj-9e2b691087db4688a57923b26d47e1e52020-12-26T00:02:24ZengMDPI AGEnergies1996-10732021-12-0114808010.3390/en14010080The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical ReviewYunus Tansu Aksoy0Yanshen Zhu1Pinar Eneren2Erin Koos3Maria Rosaria Vetrano4KU Leuven, Department of Mechanical Engineering, Division of Applied Mechanics and Energy Conversion (TME), B-3001 Leuven, BelgiumKU Leuven, Department of Chemical Engineering, Soft Matter, Rheology and Technology (SMaRT), B-3001 Leuven, BelgiumKU Leuven, Department of Mechanical Engineering, Division of Applied Mechanics and Energy Conversion (TME), B-3001 Leuven, BelgiumKU Leuven, Department of Chemical Engineering, Soft Matter, Rheology and Technology (SMaRT), B-3001 Leuven, BelgiumKU Leuven, Department of Mechanical Engineering, Division of Applied Mechanics and Energy Conversion (TME), B-3001 Leuven, BelgiumCooling by impinging droplets has been the subject of several studies for decades and still is, and, in the last few years, the potential heat transfer enhancement obtained thanks to nanofluids’ use has received increased interest. Indeed, the use of high thermal conductivity fluids, such as nanofluids’, is considered today as a possible way to strongly enhance this heat transfer process. This enhancement is related to several physical mechanisms. It is linked to the nanofluids’ rheology, their degree of stabilization, and how the presence of the nanoparticles impact the droplet/substrate dynamics. Although there are several articles on droplet impact dynamics and nanofluid heat transfer enhancement, there is a lack of review studies that couple these two topics. As such, this review aims to provide an analysis of the available literature dedicated to the dynamics between a single nanofluid droplet and a hot substrate, and the consequent enhancement or reduction of heat transfer. Finally, we also conduct a review of the available publications on nanofluids spray cooling. Although using nanofluids in spray cooling may seem a promising option, the few works present in the literature are not yet conclusive, and the mechanism of enhancement needs to be clarified.https://www.mdpi.com/1996-1073/14/1/80nanofluidheat transferdroplet coolingspray coolingnanofluid synthesisnanofluid stabilization
collection DOAJ
language English
format Article
sources DOAJ
author Yunus Tansu Aksoy
Yanshen Zhu
Pinar Eneren
Erin Koos
Maria Rosaria Vetrano
spellingShingle Yunus Tansu Aksoy
Yanshen Zhu
Pinar Eneren
Erin Koos
Maria Rosaria Vetrano
The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
Energies
nanofluid
heat transfer
droplet cooling
spray cooling
nanofluid synthesis
nanofluid stabilization
author_facet Yunus Tansu Aksoy
Yanshen Zhu
Pinar Eneren
Erin Koos
Maria Rosaria Vetrano
author_sort Yunus Tansu Aksoy
title The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
title_short The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
title_full The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
title_fullStr The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
title_full_unstemmed The Impact of Nanofluids on Droplet/Spray Cooling of a Heated Surface: A Critical Review
title_sort impact of nanofluids on droplet/spray cooling of a heated surface: a critical review
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-12-01
description Cooling by impinging droplets has been the subject of several studies for decades and still is, and, in the last few years, the potential heat transfer enhancement obtained thanks to nanofluids’ use has received increased interest. Indeed, the use of high thermal conductivity fluids, such as nanofluids’, is considered today as a possible way to strongly enhance this heat transfer process. This enhancement is related to several physical mechanisms. It is linked to the nanofluids’ rheology, their degree of stabilization, and how the presence of the nanoparticles impact the droplet/substrate dynamics. Although there are several articles on droplet impact dynamics and nanofluid heat transfer enhancement, there is a lack of review studies that couple these two topics. As such, this review aims to provide an analysis of the available literature dedicated to the dynamics between a single nanofluid droplet and a hot substrate, and the consequent enhancement or reduction of heat transfer. Finally, we also conduct a review of the available publications on nanofluids spray cooling. Although using nanofluids in spray cooling may seem a promising option, the few works present in the literature are not yet conclusive, and the mechanism of enhancement needs to be clarified.
topic nanofluid
heat transfer
droplet cooling
spray cooling
nanofluid synthesis
nanofluid stabilization
url https://www.mdpi.com/1996-1073/14/1/80
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