Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation

Miniaturization and utilization of low-dimensional structures of recent electronic devices have witnessed some new micro cooling methods which can fulfil the cooling demand for the electronic devices. Microchannel heat sink (MCHS) is one of the micro cooling method which appears as a promising metho...

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Main Authors: Aziz Japar, Wan Mohd. Arif, Che Sidik, Nor Azwadi, Saidur, R., Kamaruzaman, Natrah, Asako, Yutaka, Yusof, Siti Nurul Akmal, Lani, Mohd. Nizam
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Published: Semarak Ilmu Publishing 2022
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Online Access:http://eprints.utm.my/id/eprint/98505/
http://dx.doi.org/10.37934/cfdl.14.4.91117
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spelling my.utm.985052023-01-11T03:54:52Z http://eprints.utm.my/id/eprint/98505/ Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation Aziz Japar, Wan Mohd. Arif Che Sidik, Nor Azwadi Saidur, R. Kamaruzaman, Natrah Asako, Yutaka Yusof, Siti Nurul Akmal Lani, Mohd. Nizam T Technology (General) Miniaturization and utilization of low-dimensional structures of recent electronic devices have witnessed some new micro cooling methods which can fulfil the cooling demand for the electronic devices. Microchannel heat sink (MCHS) is one of the micro cooling method which appears as a promising method that can provide high heat transfer rate due to small hydraulic diameter. Furthermore, microchannel heat sink is easy to be fabricated compare to other micro cooling device. Due to fast development in electronic industry, hybrid microchannel heat sink with optimal design has received a great deal of attention in order to provide sustainable cooling solutions. However, most of the studies of hybrid microchannel heat sink only provided the numerical analysis without any validation of the proposed design experimentally. This is very important since it also will determine whether the proposed hybrid microchannel heat sink can be fabricated or not. Therefore, the aim of this article is to validate the numerical model of hybrid microchannel heat sink (TC-RR-SC MCHS) experimentally. The validation result showed that the maximum discrepancy between both simulation and experimental analyses for Nusselt number and friction factor were 15.8% and 17.4%, respectively, which is less than 20%. The different number of microchannels between the simulated TC-RR-SC MCHS and fabricated TC-RR-SC MCHS is one of the factors that contribute to the data discrepancy. Furthermore, the poor finishing during the fabrication process also another factor because the burrs and debris at the top and bottom surface of microchannels affect the convective heat transfer area and the flow area of fluid. Semarak Ilmu Publishing 2022-04 Article PeerReviewed Aziz Japar, Wan Mohd. Arif and Che Sidik, Nor Azwadi and Saidur, R. and Kamaruzaman, Natrah and Asako, Yutaka and Yusof, Siti Nurul Akmal and Lani, Mohd. Nizam (2022) Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation. CFD Letters, 14 (4). pp. 91-117. ISSN 2180 - 1363 http://dx.doi.org/10.37934/cfdl.14.4.91117 DOI: 10.37934/cfdl.14.4.91117
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/
topic T Technology (General)
spellingShingle T Technology (General)
Aziz Japar, Wan Mohd. Arif
Che Sidik, Nor Azwadi
Saidur, R.
Kamaruzaman, Natrah
Asako, Yutaka
Yusof, Siti Nurul Akmal
Lani, Mohd. Nizam
Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
description Miniaturization and utilization of low-dimensional structures of recent electronic devices have witnessed some new micro cooling methods which can fulfil the cooling demand for the electronic devices. Microchannel heat sink (MCHS) is one of the micro cooling method which appears as a promising method that can provide high heat transfer rate due to small hydraulic diameter. Furthermore, microchannel heat sink is easy to be fabricated compare to other micro cooling device. Due to fast development in electronic industry, hybrid microchannel heat sink with optimal design has received a great deal of attention in order to provide sustainable cooling solutions. However, most of the studies of hybrid microchannel heat sink only provided the numerical analysis without any validation of the proposed design experimentally. This is very important since it also will determine whether the proposed hybrid microchannel heat sink can be fabricated or not. Therefore, the aim of this article is to validate the numerical model of hybrid microchannel heat sink (TC-RR-SC MCHS) experimentally. The validation result showed that the maximum discrepancy between both simulation and experimental analyses for Nusselt number and friction factor were 15.8% and 17.4%, respectively, which is less than 20%. The different number of microchannels between the simulated TC-RR-SC MCHS and fabricated TC-RR-SC MCHS is one of the factors that contribute to the data discrepancy. Furthermore, the poor finishing during the fabrication process also another factor because the burrs and debris at the top and bottom surface of microchannels affect the convective heat transfer area and the flow area of fluid.
format Article
author Aziz Japar, Wan Mohd. Arif
Che Sidik, Nor Azwadi
Saidur, R.
Kamaruzaman, Natrah
Asako, Yutaka
Yusof, Siti Nurul Akmal
Lani, Mohd. Nizam
author_facet Aziz Japar, Wan Mohd. Arif
Che Sidik, Nor Azwadi
Saidur, R.
Kamaruzaman, Natrah
Asako, Yutaka
Yusof, Siti Nurul Akmal
Lani, Mohd. Nizam
author_sort Aziz Japar, Wan Mohd. Arif
title Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
title_short Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
title_full Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
title_fullStr Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
title_full_unstemmed Hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
title_sort hybrid microchannel heat sink with sustainable cooling solutions: numerical model validation
publisher Semarak Ilmu Publishing
publishDate 2022
url http://eprints.utm.my/id/eprint/98505/
http://dx.doi.org/10.37934/cfdl.14.4.91117
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score 13.209306