Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays

Devices such as Insulated Gate Bipolar Transistor (IGBT), supercomputers and microcontroller depend on the heat sink ability of a microchannel. The present study focuses on the experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchanne...

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Main Authors: Nadaraja, D., Kamaruzaman, N., Abidin, U., Sies, M. M.
Format: Article
Published: Penerbit Akademia Baru 2019
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Online Access:http://eprints.utm.my/id/eprint/90132/
http://www.akademiabaru.com/doc/ARFMTSV57_N1_P23_31.pdf.
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.901322021-03-29T06:00:13Z http://eprints.utm.my/id/eprint/90132/ Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays Nadaraja, D. Kamaruzaman, N. Abidin, U. Sies, M. M. TP Chemical technology Devices such as Insulated Gate Bipolar Transistor (IGBT), supercomputers and microcontroller depend on the heat sink ability of a microchannel. The present study focuses on the experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays. The main objective of the study is to design/develop array of micro channel with different layer arrangement and to experimentally investigate the effect of layer arrangement in microchannel arrays performance. A microchannel heat sink with two layers configuration were designed and developed to study the thermal hydraulic performance. The data collected were used to find the heat flux dissipated by the microchannel, the pressure drop of the system, and dimensionless parameter (Nusselt number and Reynolds number). Analysis of experimental results presented the thermal hydraulic performance of short microchannel heat sink and discussed the effect of mass flow rate, heat flux and temperature difference of the flow to the heat transfer performance. The data obtained in this study revealed that 128 short multilayer microchannel structured on area of 1 cm 2 could dissipate a maximum of 260 W/cm 2 heat with maximum substrate temperature to inlet water temperature difference of 5°C. This was achieved by a pressure loss of only 1.71 bar. The comparative study was done for the results obtained for the double layer with the single layer where the heat flux, pressure drop and Nusselt number was compared. Penerbit Akademia Baru 2019 Article PeerReviewed Nadaraja, D. and Kamaruzaman, N. and Abidin, U. and Sies, M. M. (2019) Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 57 (1). ISSN 2289-7879 http://www.akademiabaru.com/doc/ARFMTSV57_N1_P23_31.pdf.
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 TP Chemical technology
spellingShingle TP Chemical technology
Nadaraja, D.
Kamaruzaman, N.
Abidin, U.
Sies, M. M.
Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
description Devices such as Insulated Gate Bipolar Transistor (IGBT), supercomputers and microcontroller depend on the heat sink ability of a microchannel. The present study focuses on the experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays. The main objective of the study is to design/develop array of micro channel with different layer arrangement and to experimentally investigate the effect of layer arrangement in microchannel arrays performance. A microchannel heat sink with two layers configuration were designed and developed to study the thermal hydraulic performance. The data collected were used to find the heat flux dissipated by the microchannel, the pressure drop of the system, and dimensionless parameter (Nusselt number and Reynolds number). Analysis of experimental results presented the thermal hydraulic performance of short microchannel heat sink and discussed the effect of mass flow rate, heat flux and temperature difference of the flow to the heat transfer performance. The data obtained in this study revealed that 128 short multilayer microchannel structured on area of 1 cm 2 could dissipate a maximum of 260 W/cm 2 heat with maximum substrate temperature to inlet water temperature difference of 5°C. This was achieved by a pressure loss of only 1.71 bar. The comparative study was done for the results obtained for the double layer with the single layer where the heat flux, pressure drop and Nusselt number was compared.
format Article
author Nadaraja, D.
Kamaruzaman, N.
Abidin, U.
Sies, M. M.
author_facet Nadaraja, D.
Kamaruzaman, N.
Abidin, U.
Sies, M. M.
author_sort Nadaraja, D.
title Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
title_short Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
title_full Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
title_fullStr Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
title_full_unstemmed Experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
title_sort experimental study on the effect of multilayer microchannel arrangement to the thermal hydraulic performance of microchannel arrays
publisher Penerbit Akademia Baru
publishDate 2019
url http://eprints.utm.my/id/eprint/90132/
http://www.akademiabaru.com/doc/ARFMTSV57_N1_P23_31.pdf.
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