Characterization of a short microchannel device for surface cooling
The development of microchannel devices is expanded widely due to the demand for small scale electronic devices. In order to increase the capability of the electronic devices, high heat transfer performance with low energy consumption cooler is required. This study is focusing on the characterizatio...
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my.utm.610412017-03-14T00:10:59Z http://eprints.utm.my/id/eprint/61041/ Characterization of a short microchannel device for surface cooling Kamaruzaman, Natrah Saat, Aminuddin TJ Mechanical engineering and machinery The development of microchannel devices is expanded widely due to the demand for small scale electronic devices. In order to increase the capability of the electronic devices, high heat transfer performance with low energy consumption cooler is required. This study is focusing on the characterization of new short microchannel for surface cooling purposes with the channel dimension of 800 µm wide, 200 µm length, 100 µm depth and total area of one cm2. Deionized water is used as the transport medium. A map of microchannel characteristics is plotted in term of average thermal resistance, pumping power, power supplied and mass flow rate of the fluid. From this mapping, it is shown that the thermal resistance decreased as the pumping power decreased. The results also show that the heat flux has not affected the value of pumping power. The different for each heat flux value is ranged between 3 to 4 %. The mapping presented in this study provides potential characteristics information and conditions to apply this particular microchannel for surface cooling. 2014 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/61041/1/NatrahKamaruzaman2014_CharacterizationofaShortMicrochannelDevice.pdf Kamaruzaman, Natrah and Saat, Aminuddin (2014) Characterization of a short microchannel device for surface cooling. In: The 7th International Meeting on Advances in Thermofluids, 26-27 Nov, 2014, Kuala Lumpur, Malaysia. |
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TJ Mechanical engineering and machinery Kamaruzaman, Natrah Saat, Aminuddin Characterization of a short microchannel device for surface cooling |
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The development of microchannel devices is expanded widely due to the demand for small scale electronic devices. In order to increase the capability of the electronic devices, high heat transfer performance with low energy consumption cooler is required. This study is focusing on the characterization of new short microchannel for surface cooling purposes with the channel dimension of 800 µm wide, 200 µm length, 100 µm depth and total area of one cm2. Deionized water is used as the transport medium. A map of microchannel characteristics is plotted in term of average thermal resistance, pumping power, power supplied and mass flow rate of the fluid. From this mapping, it is shown that the thermal resistance decreased as the pumping power decreased. The results also show that the heat flux has not affected the value of pumping power. The different for each heat flux value is ranged between 3 to 4 %. The mapping presented in this study provides potential characteristics information and conditions to apply this particular microchannel for surface cooling. |
format |
Conference or Workshop Item |
author |
Kamaruzaman, Natrah Saat, Aminuddin |
author_facet |
Kamaruzaman, Natrah Saat, Aminuddin |
author_sort |
Kamaruzaman, Natrah |
title |
Characterization of a short microchannel device for surface cooling |
title_short |
Characterization of a short microchannel device for surface cooling |
title_full |
Characterization of a short microchannel device for surface cooling |
title_fullStr |
Characterization of a short microchannel device for surface cooling |
title_full_unstemmed |
Characterization of a short microchannel device for surface cooling |
title_sort |
characterization of a short microchannel device for surface cooling |
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2014 |
url |
http://eprints.utm.my/id/eprint/61041/1/NatrahKamaruzaman2014_CharacterizationofaShortMicrochannelDevice.pdf http://eprints.utm.my/id/eprint/61041/ |
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