Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles

The numerical study of natural convection heat transfer inside a U-shaped enclosure with various thermal profiles by using copper-alumina/water hybrid nanofluid is reported. The study focuses on the effect of constant, linear, quadratic, and sinusoidal with different amplitudes and periods and absol...

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Main Authors: Asmadi, Muhammad Solleh, Kasmani, Ruhaila Md., Siri, Zailan., Saleh, H.
Format: Article
Published: AIP Publishing 2021
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Online Access:http://eprints.um.edu.my/26735/
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Institution: Universiti Malaya
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spelling my.um.eprints.267352022-04-18T04:14:13Z http://eprints.um.edu.my/26735/ Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles Asmadi, Muhammad Solleh Kasmani, Ruhaila Md. Siri, Zailan. Saleh, H. QC Physics The numerical study of natural convection heat transfer inside a U-shaped enclosure with various thermal profiles by using copper-alumina/water hybrid nanofluid is reported. The study focuses on the effect of constant, linear, quadratic, and sinusoidal with different amplitudes and periods and absolute sinusoidal thermal profiles to the heat transfer efficiency inside the lid. A weighted residual Galerkin triangular finite element method is used alongside the damped Newton-Raphson algorithm to calculate the heat transfer rate of the system in terms of averaged and local Nusselt number. The result from the present model is compared with the previously published experimental and numerical data. The isotherms and streamlines of the fluid flow for each thermal profile are presented with a nanoparticle volume fraction of between 0 and 0.1 for Rayleigh number of 10(4)-10(6). It is found that the constant heating profile gives the best heat dissipation performance, while the sinusoidal thermal profile performed the worst. The results gained from this paper will be useful in understanding how heat can be transferred effectively as it can be applied to many different industries, including the electronics field. AIP Publishing 2021-04-01 Article PeerReviewed Asmadi, Muhammad Solleh and Kasmani, Ruhaila Md. and Siri, Zailan. and Saleh, H. (2021) Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles. Physics of Fluids, 33 (3). ISSN 1070-6631, DOI https://doi.org/10.1063/5.0040903 <https://doi.org/10.1063/5.0040903>. 10.1063/5.0040903
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QC Physics
spellingShingle QC Physics
Asmadi, Muhammad Solleh
Kasmani, Ruhaila Md.
Siri, Zailan.
Saleh, H.
Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
description The numerical study of natural convection heat transfer inside a U-shaped enclosure with various thermal profiles by using copper-alumina/water hybrid nanofluid is reported. The study focuses on the effect of constant, linear, quadratic, and sinusoidal with different amplitudes and periods and absolute sinusoidal thermal profiles to the heat transfer efficiency inside the lid. A weighted residual Galerkin triangular finite element method is used alongside the damped Newton-Raphson algorithm to calculate the heat transfer rate of the system in terms of averaged and local Nusselt number. The result from the present model is compared with the previously published experimental and numerical data. The isotherms and streamlines of the fluid flow for each thermal profile are presented with a nanoparticle volume fraction of between 0 and 0.1 for Rayleigh number of 10(4)-10(6). It is found that the constant heating profile gives the best heat dissipation performance, while the sinusoidal thermal profile performed the worst. The results gained from this paper will be useful in understanding how heat can be transferred effectively as it can be applied to many different industries, including the electronics field.
format Article
author Asmadi, Muhammad Solleh
Kasmani, Ruhaila Md.
Siri, Zailan.
Saleh, H.
author_facet Asmadi, Muhammad Solleh
Kasmani, Ruhaila Md.
Siri, Zailan.
Saleh, H.
author_sort Asmadi, Muhammad Solleh
title Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
title_short Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
title_full Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
title_fullStr Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
title_full_unstemmed Thermal performance analysis for moderate Rayleigh numbers of Newtonian hybrid nanofluid-filled U-shaped cavity with various thermal profiles
title_sort thermal performance analysis for moderate rayleigh numbers of newtonian hybrid nanofluid-filled u-shaped cavity with various thermal profiles
publisher AIP Publishing
publishDate 2021
url http://eprints.um.edu.my/26735/
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