Investigation on the cooling performance of a compact heat exchanger using nanofluids

In this paper, analysis of ethylene glycol (EG) as a base fluid with aluminum dioxide (Al2O3), diamond (DM), silicon dioxide (SiO2) and titanium dioxide (TiO2) as the coolants on compact heat exchangers (CHEs) with flattened tube plate fin is performed. By using ε-NTU rating method the cooling perfo...

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Main Authors: Abdul Jalal, M.F., Shuaib, N.H., Gunnasegaran, P., Sandhita, E.
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Published: 2018
Online Access:http://dspace.uniten.edu.my/jspui/handle/123456789/9627
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spelling my.uniten.dspace-96272018-03-02T07:55:53Z Investigation on the cooling performance of a compact heat exchanger using nanofluids Abdul Jalal, M.F. Shuaib, N.H. Gunnasegaran, P. Sandhita, E. In this paper, analysis of ethylene glycol (EG) as a base fluid with aluminum dioxide (Al2O3), diamond (DM), silicon dioxide (SiO2) and titanium dioxide (TiO2) as the coolants on compact heat exchangers (CHEs) with flattened tube plate fin is performed. By using ε-NTU rating method the cooling performance under cross flow arrangement of the CHEs with unmixed air and nanofluid as coolant will be investigated. The nanoparticles volume fraction θ is varied from 0 % to 4 %. The mathematical formulation, nanofluid properties and relevant input data are extracted from literatures. The CHE performance with respect to heat transfer coefficient, pressure drop and pumping power by means of MATLAB SIMULINK is investigated. The result shows that with the increase of nanoparticles volume fraction and nanofluid Reynold number, the CHE exhibits enhancement in term of heat transfer coefficient with the penalty of increase in pressure drop as well as pumping power. © 2012 American Institute of Physics. 2018-03-02T07:55:53Z 2018-03-02T07:55:53Z 2012 http://dspace.uniten.edu.my/jspui/handle/123456789/9627
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country Malaysia
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description In this paper, analysis of ethylene glycol (EG) as a base fluid with aluminum dioxide (Al2O3), diamond (DM), silicon dioxide (SiO2) and titanium dioxide (TiO2) as the coolants on compact heat exchangers (CHEs) with flattened tube plate fin is performed. By using ε-NTU rating method the cooling performance under cross flow arrangement of the CHEs with unmixed air and nanofluid as coolant will be investigated. The nanoparticles volume fraction θ is varied from 0 % to 4 %. The mathematical formulation, nanofluid properties and relevant input data are extracted from literatures. The CHE performance with respect to heat transfer coefficient, pressure drop and pumping power by means of MATLAB SIMULINK is investigated. The result shows that with the increase of nanoparticles volume fraction and nanofluid Reynold number, the CHE exhibits enhancement in term of heat transfer coefficient with the penalty of increase in pressure drop as well as pumping power. © 2012 American Institute of Physics.
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author Abdul Jalal, M.F.
Shuaib, N.H.
Gunnasegaran, P.
Sandhita, E.
spellingShingle Abdul Jalal, M.F.
Shuaib, N.H.
Gunnasegaran, P.
Sandhita, E.
Investigation on the cooling performance of a compact heat exchanger using nanofluids
author_facet Abdul Jalal, M.F.
Shuaib, N.H.
Gunnasegaran, P.
Sandhita, E.
author_sort Abdul Jalal, M.F.
title Investigation on the cooling performance of a compact heat exchanger using nanofluids
title_short Investigation on the cooling performance of a compact heat exchanger using nanofluids
title_full Investigation on the cooling performance of a compact heat exchanger using nanofluids
title_fullStr Investigation on the cooling performance of a compact heat exchanger using nanofluids
title_full_unstemmed Investigation on the cooling performance of a compact heat exchanger using nanofluids
title_sort investigation on the cooling performance of a compact heat exchanger using nanofluids
publishDate 2018
url http://dspace.uniten.edu.my/jspui/handle/123456789/9627
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score 13.159267