Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.

The high thermal conductivity of Titanium dioxide (TiO2) makes it ideal for heat transfer, particularly in a solar collector. However, nanofluids containing dissolved TiO2 nanoparticles tend to agglomerate. Thus, nanoparticle silver (Ag) is used to stabilize the nanofluid. This study looks at a hybr...

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Main Authors: Jiann, Lim Yeou, Mohamad Isa, Sharena, Rawi, Noraihan Afiqah, Mohamad, Ahmad Qushairi, Shafie, Sharidan
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2023
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Online Access:http://eprints.utm.my/106180/1/LimYeouJiann2023_InvestigatingtheEffectsofWusSlipandSmoluchowskis.pdf
http://eprints.utm.my/106180/
http://dx.doi.org/10.37934/arfmts.107.2.236252
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spelling my.utm.1061802024-06-19T08:38:37Z http://eprints.utm.my/106180/ Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance. Jiann, Lim Yeou Mohamad Isa, Sharena Rawi, Noraihan Afiqah Mohamad, Ahmad Qushairi Shafie, Sharidan Q Science (General) The high thermal conductivity of Titanium dioxide (TiO2) makes it ideal for heat transfer, particularly in a solar collector. However, nanofluids containing dissolved TiO2 nanoparticles tend to agglomerate. Thus, nanoparticle silver (Ag) is used to stabilize the nanofluid. This study looks at a hybrid nanoparticle of TiO2 and Ag, which are put into water to make a hybrid nanofluid, over a stretching plate. The effects of Wu’s velocity slip and Smoluchowski’s temperature slip are taken into consideration. Xue's thermal conductivity model for the hybrid nanofluid is employed. The governing equations are transformed by applying the similarity transformation technique and solved semi-analytically using the Homotopy Analysis Method. The effect of the multiple slips on the fluid profiles is graphically displayed and discussed. Results illustrate that the temperature profile is diminished by 42% due to Smoluchowski's temperature slip parameter, while the velocity profile is reduced by more than 40% due to the first and second-order Wu's slip parameters. These findings are important for optimizing the performance of the hybrid nanofluids. For example, in the solar collector, where a better understanding of heat transfer fluid characteristics can improve the stability of the hybrid nanofluid and the efficiency of eco-friendly energy storage. Semarak Ilmu Publishing 2023-07 Article PeerReviewed application/pdf en http://eprints.utm.my/106180/1/LimYeouJiann2023_InvestigatingtheEffectsofWusSlipandSmoluchowskis.pdf Jiann, Lim Yeou and Mohamad Isa, Sharena and Rawi, Noraihan Afiqah and Mohamad, Ahmad Qushairi and Shafie, Sharidan (2023) Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 107 (2). pp. 236-252. ISSN 2289-7879 http://dx.doi.org/10.37934/arfmts.107.2.236252 DOI: 10.37934/arfmts.107.2.236252
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Jiann, Lim Yeou
Mohamad Isa, Sharena
Rawi, Noraihan Afiqah
Mohamad, Ahmad Qushairi
Shafie, Sharidan
Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
description The high thermal conductivity of Titanium dioxide (TiO2) makes it ideal for heat transfer, particularly in a solar collector. However, nanofluids containing dissolved TiO2 nanoparticles tend to agglomerate. Thus, nanoparticle silver (Ag) is used to stabilize the nanofluid. This study looks at a hybrid nanoparticle of TiO2 and Ag, which are put into water to make a hybrid nanofluid, over a stretching plate. The effects of Wu’s velocity slip and Smoluchowski’s temperature slip are taken into consideration. Xue's thermal conductivity model for the hybrid nanofluid is employed. The governing equations are transformed by applying the similarity transformation technique and solved semi-analytically using the Homotopy Analysis Method. The effect of the multiple slips on the fluid profiles is graphically displayed and discussed. Results illustrate that the temperature profile is diminished by 42% due to Smoluchowski's temperature slip parameter, while the velocity profile is reduced by more than 40% due to the first and second-order Wu's slip parameters. These findings are important for optimizing the performance of the hybrid nanofluids. For example, in the solar collector, where a better understanding of heat transfer fluid characteristics can improve the stability of the hybrid nanofluid and the efficiency of eco-friendly energy storage.
format Article
author Jiann, Lim Yeou
Mohamad Isa, Sharena
Rawi, Noraihan Afiqah
Mohamad, Ahmad Qushairi
Shafie, Sharidan
author_facet Jiann, Lim Yeou
Mohamad Isa, Sharena
Rawi, Noraihan Afiqah
Mohamad, Ahmad Qushairi
Shafie, Sharidan
author_sort Jiann, Lim Yeou
title Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
title_short Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
title_full Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
title_fullStr Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
title_full_unstemmed Investigating the effects of wu's slip and smoluchowski's slip on hybrid TiO2/Ag nanofluid performance.
title_sort investigating the effects of wu's slip and smoluchowski's slip on hybrid tio2/ag nanofluid performance.
publisher Semarak Ilmu Publishing
publishDate 2023
url http://eprints.utm.my/106180/1/LimYeouJiann2023_InvestigatingtheEffectsofWusSlipandSmoluchowskis.pdf
http://eprints.utm.my/106180/
http://dx.doi.org/10.37934/arfmts.107.2.236252
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score 13.211869