Exergetic optimization of a flat plate solar collector design

It has been established that energy efficiency of a flat plate solar collector increases without extremum points with the flow rate and likewise the fluid outlet temperature increases with the collecting area. Thus, it provides no maximum points for the purpose of optimization of solar collector des...

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Main Authors: Sia, Toh Ching, Velautham, Sanjayan, Nordin, Amer
Format: Article
Published: Regional Energy Resources Information Center 2007
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Online Access:http://eprints.utm.my/6612/
http://www.rericjournal.ait.ac.th/index.php/reric/article/view/201
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author Sia, Toh Ching
Velautham, Sanjayan
Nordin, Amer
author_facet Sia, Toh Ching
Velautham, Sanjayan
Nordin, Amer
author_sort Sia, Toh Ching
building UTM Library
collection Institutional Repository
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
continent Asia
country Malaysia
description It has been established that energy efficiency of a flat plate solar collector increases without extremum points with the flow rate and likewise the fluid outlet temperature increases with the collecting area. Thus, it provides no maximum points for the purpose of optimization of solar collector design. In contrast, exergy analysis presents various local points forhex = f(m,Ac), and with a global maximum point. Based on these findings, this paper further develops the exergy analysis of a flat plate solar collector by outlining the correlation between the exergy efficiency of a flat plate solar collector, hex ,with the outlet and inlet fluid temperature variation, ∆T, with respect to the influence of fluid flow rate, m , and collector area, Ac. In addition, the inter-relation between the fluid flow rate and the collector area is also examined as a ratio, R, where R = m/Ac , thus, giving hex = f(R) and DT = f(R) . From these evaluations, it seems that there is a precise value of R which will give the optimum operating mode for the solar collector, either with maximum exergy efficiency or maximum temperature variation, or both, for a fixed design specification. The value of R and the corresponding values of exergy efficiency and temperature variation are evaluated in this paper for Malaysia meteorological conditions.
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spelling my.utm.eprints-66122017-10-22T02:04:17Z http://eprints.utm.my/6612/ Exergetic optimization of a flat plate solar collector design Sia, Toh Ching Velautham, Sanjayan Nordin, Amer T Technology (General) It has been established that energy efficiency of a flat plate solar collector increases without extremum points with the flow rate and likewise the fluid outlet temperature increases with the collecting area. Thus, it provides no maximum points for the purpose of optimization of solar collector design. In contrast, exergy analysis presents various local points forhex = f(m,Ac), and with a global maximum point. Based on these findings, this paper further develops the exergy analysis of a flat plate solar collector by outlining the correlation between the exergy efficiency of a flat plate solar collector, hex ,with the outlet and inlet fluid temperature variation, ∆T, with respect to the influence of fluid flow rate, m , and collector area, Ac. In addition, the inter-relation between the fluid flow rate and the collector area is also examined as a ratio, R, where R = m/Ac , thus, giving hex = f(R) and DT = f(R) . From these evaluations, it seems that there is a precise value of R which will give the optimum operating mode for the solar collector, either with maximum exergy efficiency or maximum temperature variation, or both, for a fixed design specification. The value of R and the corresponding values of exergy efficiency and temperature variation are evaluated in this paper for Malaysia meteorological conditions. Regional Energy Resources Information Center 2007-06 Article PeerReviewed Sia, Toh Ching and Velautham, Sanjayan and Nordin, Amer (2007) Exergetic optimization of a flat plate solar collector design. International Energy Journal, 8 (2). pp. 125-130. ISSN 1513-718X http://www.rericjournal.ait.ac.th/index.php/reric/article/view/201
spellingShingle T Technology (General)
Sia, Toh Ching
Velautham, Sanjayan
Nordin, Amer
Exergetic optimization of a flat plate solar collector design
title Exergetic optimization of a flat plate solar collector design
title_full Exergetic optimization of a flat plate solar collector design
title_fullStr Exergetic optimization of a flat plate solar collector design
title_full_unstemmed Exergetic optimization of a flat plate solar collector design
title_short Exergetic optimization of a flat plate solar collector design
title_sort exergetic optimization of a flat plate solar collector design
topic T Technology (General)
url http://eprints.utm.my/6612/
http://www.rericjournal.ait.ac.th/index.php/reric/article/view/201
url_provider http://eprints.utm.my/