The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes

The effect of geometrical parameters on water flow and heat transfer characteristics in microchannels is numerically investigated for Reynolds number range of 100-1000. The three-dimensional steady, laminar flow and heat transfer governing equations are solved using finite volume method. The computa...

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Main Authors: Gunnasegaran, P., Mohammed, H.A., Shuaib, N.H., Saidur, Rahman
Format: Article
Published: International Communications in Heat and Mass Transfer 2010
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Online Access:http://eprints.um.edu.my/6770/
http://ac.els-cdn.com/S0735193310001375/1-s2.0-S0735193310001375-main.pdf?_tid=76086e3e-4024-11e2-8c88-00000aacb35f&acdnat=1354853791_f1fb13ce335708b46787b112f56496aa
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spelling my.um.eprints.67702019-10-25T06:09:10Z http://eprints.um.edu.my/6770/ The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes Gunnasegaran, P. Mohammed, H.A. Shuaib, N.H. Saidur, Rahman TA Engineering (General). Civil engineering (General) TJ Mechanical engineering and machinery The effect of geometrical parameters on water flow and heat transfer characteristics in microchannels is numerically investigated for Reynolds number range of 100-1000. The three-dimensional steady, laminar flow and heat transfer governing equations are solved using finite volume method. The computational domain is taken as the entire heat sink including the inlet/outlet ports, wall plenums, and microchannels. Three different shapes of microchannel heat sinks are investigated in this study which are rectangular, trapezoidal, and triangular. The water flow field and heat transfer phenomena inside each shape of heated microchannels are examined with three different geometrical dimensions. Using the averaged fluid temperature and heat transfer coefficient in each shape of the heat sink to quantify the fluid flow and temperature distributions, it is found that better uniformities in heat transfer coefficient and temperature can be obtained in heat sinks having the smallest hydraulic diameter. It is also inferred that the heat sink having the smallest hydraulic diameter has better performance in terms of pressure drop and friction factor among other heat sinks studied. International Communications in Heat and Mass Transfer 2010 Article PeerReviewed Gunnasegaran, P. and Mohammed, H.A. and Shuaib, N.H. and Saidur, Rahman (2010) The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes. International Communications in Heat and Mass Transfer, 37 (8). pp. 1078-1086. ISSN 0735-1933 http://ac.els-cdn.com/S0735193310001375/1-s2.0-S0735193310001375-main.pdf?_tid=76086e3e-4024-11e2-8c88-00000aacb35f&acdnat=1354853791_f1fb13ce335708b46787b112f56496aa 10.1016/j.icheatmasstransfer.2010.06.014
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 TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
spellingShingle TA Engineering (General). Civil engineering (General)
TJ Mechanical engineering and machinery
Gunnasegaran, P.
Mohammed, H.A.
Shuaib, N.H.
Saidur, Rahman
The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
description The effect of geometrical parameters on water flow and heat transfer characteristics in microchannels is numerically investigated for Reynolds number range of 100-1000. The three-dimensional steady, laminar flow and heat transfer governing equations are solved using finite volume method. The computational domain is taken as the entire heat sink including the inlet/outlet ports, wall plenums, and microchannels. Three different shapes of microchannel heat sinks are investigated in this study which are rectangular, trapezoidal, and triangular. The water flow field and heat transfer phenomena inside each shape of heated microchannels are examined with three different geometrical dimensions. Using the averaged fluid temperature and heat transfer coefficient in each shape of the heat sink to quantify the fluid flow and temperature distributions, it is found that better uniformities in heat transfer coefficient and temperature can be obtained in heat sinks having the smallest hydraulic diameter. It is also inferred that the heat sink having the smallest hydraulic diameter has better performance in terms of pressure drop and friction factor among other heat sinks studied.
format Article
author Gunnasegaran, P.
Mohammed, H.A.
Shuaib, N.H.
Saidur, Rahman
author_facet Gunnasegaran, P.
Mohammed, H.A.
Shuaib, N.H.
Saidur, Rahman
author_sort Gunnasegaran, P.
title The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
title_short The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
title_full The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
title_fullStr The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
title_full_unstemmed The effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
title_sort effect of geometrical parameters on heat transfer characteristics of microchannels heat sink with different shapes
publisher International Communications in Heat and Mass Transfer
publishDate 2010
url http://eprints.um.edu.my/6770/
http://ac.els-cdn.com/S0735193310001375/1-s2.0-S0735193310001375-main.pdf?_tid=76086e3e-4024-11e2-8c88-00000aacb35f&acdnat=1354853791_f1fb13ce335708b46787b112f56496aa
_version_ 1648736068869029888
score 13.160551