Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review
Advancement in the electronics industry led to the development of microscale heat transfer devices which offered high heat transfer coefficient in a compact size. Nevertheless, the heat transfer characteristics were limited by the heat transfer fluids that were used. The recent development of nanote...
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my.uniten.dspace-305582023-12-29T15:49:27Z Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review Mohammed H.A. Bhaskaran G. Shuaib N.H. Saidur R. 15837504600 36717364100 13907934500 6602374364 Fluid flow Heat transfer enhancement Microchannel heat exchanger Nanofluid Electronics industry Flow of fluids Heat transfer coefficients Microchannels Nanofluidics Enhanced heat transfer Heat transfer and fluid flow Heat transfer characteristics Heat Transfer enhancement Micro-channel devices Micro-channel heat exchangers Microscale heat transfer Nanofluids Heat exchangers Advancement in the electronics industry led to the development of microscale heat transfer devices which offered high heat transfer coefficient in a compact size. Nevertheless, the heat transfer characteristics were limited by the heat transfer fluids that were used. The recent development of nanotechnology led to the concept of using suspended nanoparticles in heat transfer fluids to improve the heat transfer coefficient of the base fluids. The amount of research done in this particular field is fairly new and limited. Most studies done on microchannel devices and nanofluids recently have reported enhanced heat transfer capabilities and results that challenge traditional theories and limitations on heat transfer devices and fluids. Several important aspects of microchannel heat exchangers that affect the performance such as channel geometry, fluid inlet and outlet arrangement, type of construction were discussed together with the reported findings from experimental, numerical and theoretical literatures. This review also focuses on the important aspects of nanofluids such as types, properties and heat transfer characteristics and limitations towards the application of nanofluids. Apart from that, a comprehensive review on the work done regarding to heat transfer and fluid flow characteristics in microchannels heat exchanger using conventional fluids as well as nanofluids is also described. � 2010 Elsevier Ltd. Final 2023-12-29T07:49:27Z 2023-12-29T07:49:27Z 2011 Review 10.1016/j.rser.2010.11.031 2-s2.0-78651095757 https://www.scopus.com/inward/record.uri?eid=2-s2.0-78651095757&doi=10.1016%2fj.rser.2010.11.031&partnerID=40&md5=acf8c2439aff2d145739a8da008208a9 https://irepository.uniten.edu.my/handle/123456789/30558 15 3 1502 1512 Elsevier Ltd Scopus |
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Fluid flow Heat transfer enhancement Microchannel heat exchanger Nanofluid Electronics industry Flow of fluids Heat transfer coefficients Microchannels Nanofluidics Enhanced heat transfer Heat transfer and fluid flow Heat transfer characteristics Heat Transfer enhancement Micro-channel devices Micro-channel heat exchangers Microscale heat transfer Nanofluids Heat exchangers |
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Fluid flow Heat transfer enhancement Microchannel heat exchanger Nanofluid Electronics industry Flow of fluids Heat transfer coefficients Microchannels Nanofluidics Enhanced heat transfer Heat transfer and fluid flow Heat transfer characteristics Heat Transfer enhancement Micro-channel devices Micro-channel heat exchangers Microscale heat transfer Nanofluids Heat exchangers Mohammed H.A. Bhaskaran G. Shuaib N.H. Saidur R. Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
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Advancement in the electronics industry led to the development of microscale heat transfer devices which offered high heat transfer coefficient in a compact size. Nevertheless, the heat transfer characteristics were limited by the heat transfer fluids that were used. The recent development of nanotechnology led to the concept of using suspended nanoparticles in heat transfer fluids to improve the heat transfer coefficient of the base fluids. The amount of research done in this particular field is fairly new and limited. Most studies done on microchannel devices and nanofluids recently have reported enhanced heat transfer capabilities and results that challenge traditional theories and limitations on heat transfer devices and fluids. Several important aspects of microchannel heat exchangers that affect the performance such as channel geometry, fluid inlet and outlet arrangement, type of construction were discussed together with the reported findings from experimental, numerical and theoretical literatures. This review also focuses on the important aspects of nanofluids such as types, properties and heat transfer characteristics and limitations towards the application of nanofluids. Apart from that, a comprehensive review on the work done regarding to heat transfer and fluid flow characteristics in microchannels heat exchanger using conventional fluids as well as nanofluids is also described. � 2010 Elsevier Ltd. |
author2 |
15837504600 |
author_facet |
15837504600 Mohammed H.A. Bhaskaran G. Shuaib N.H. Saidur R. |
format |
Review |
author |
Mohammed H.A. Bhaskaran G. Shuaib N.H. Saidur R. |
author_sort |
Mohammed H.A. |
title |
Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
title_short |
Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
title_full |
Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
title_fullStr |
Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
title_full_unstemmed |
Heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: A review |
title_sort |
heat transfer and fluid flow characteristics in microchannels heat exchanger using nanofluids: a review |
publisher |
Elsevier Ltd |
publishDate |
2023 |
_version_ |
1806426308290281472 |
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13.222552 |