FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS
This research aims to numerically investigate the feasibility of polymer-based microchannel heat sinks(MCHSs)as thermal solutions using computational fluid dynamics (CFD). ANSYS 19.1 was used. Lightweight aspect has been given huge emphasis in recent years. Metal-based mat...
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التنسيق: | أطروحة |
اللغة: | English |
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2020
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الوصول للمادة أونلاين: | http://utpedia.utp.edu.my/20444/1/Ong%20Yue%20Seong_17007965.pdf http://utpedia.utp.edu.my/20444/ |
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my-utp-utpedia.204442021-08-18T22:59:54Z http://utpedia.utp.edu.my/20444/ FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS YUE , ONG SEONG TP Chemical technology This research aims to numerically investigate the feasibility of polymer-based microchannel heat sinks(MCHSs)as thermal solutions using computational fluid dynamics (CFD). ANSYS 19.1 was used. Lightweight aspect has been given huge emphasis in recent years. Metal-based materials are commonly used to fabricate MCHSs due to their high thermal conductivity. Consequently, MCHSs are heavy due to the high density of these materials albeit the small footprint of MCHSs. Polymer-based materials are interesting alternatives 2020-08 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/20444/1/Ong%20Yue%20Seong_17007965.pdf YUE , ONG SEONG (2020) FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS. Masters thesis, Universiti Teknologi PETRONAS. |
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TP Chemical technology |
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TP Chemical technology YUE , ONG SEONG FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
description |
This research aims to numerically investigate the feasibility of polymer-based microchannel heat sinks(MCHSs)as thermal solutions using computational fluid dynamics (CFD). ANSYS 19.1 was used. Lightweight aspect has been given huge emphasis in recent years. Metal-based materials are commonly used to fabricate MCHSs due to their high thermal conductivity. Consequently, MCHSs are heavy due to the high density of these materials albeit the small footprint of MCHSs. Polymer-based materials are interesting alternatives |
format |
Thesis |
author |
YUE , ONG SEONG |
author_facet |
YUE , ONG SEONG |
author_sort |
YUE , ONG SEONG |
title |
FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
title_short |
FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
title_full |
FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
title_fullStr |
FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
title_full_unstemmed |
FEASIBILITY STUDY OFPOLYMER-BASEDMICROCHANNEL HEAT SINKASTHERMAL SOLUTIONUSINGCOMPUTATIONALFLUID DYNAMICS |
title_sort |
feasibility study ofpolymer-basedmicrochannel heat sinkasthermal solutionusingcomputationalfluid dynamics |
publishDate |
2020 |
url |
http://utpedia.utp.edu.my/20444/1/Ong%20Yue%20Seong_17007965.pdf http://utpedia.utp.edu.my/20444/ |
_version_ |
1739832753945313280 |
score |
13.251813 |