Exergy analysis of a vacuum tube solar collector system having indirect working principle

In this study, the energy and exergy analysis of a hot water preparation system, which is a boiler assisted vacuum tube solar collector, has been conducted. The obtained data were compared with reported results in the literature related to direct operating principle system. Average energy and exergy...

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Main Authors: Yildizhan Hasan, Sivrioglu Mecit
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2017-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600009Y.pdf
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spelling doaj-e19fa4ec68c54a3cb8f1617e7bd824db2021-01-02T09:16:38ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632017-01-01216 Part B2813282510.2298/TSCI150905009Y0354-98361600009YExergy analysis of a vacuum tube solar collector system having indirect working principleYildizhan Hasan0Sivrioglu Mecit1Iskenderun Technical University, Hatay/Dörtyol, TurkeyGazi University, Ankara, TurkeyIn this study, the energy and exergy analysis of a hot water preparation system, which is a boiler assisted vacuum tube solar collector, has been conducted. The obtained data were compared with reported results in the literature related to direct operating principle system. Average energy and exergy efficiencies of the experimental system were founded 12% and 0.3%, respectively. The average energy and exergy efficiencies of the vacuum tube solar collectors were founded 13.6% and 1.3%. Energy and exergy efficiencies of the vacuum tube solar collectors, which have indirect operating principle, are lower than direct system working with solar collectors. Maximum exergy loss has occurred in the vacuum tube solar collectors and followed it boiler and pump, respectively.http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600009Y.pdfexergy analysis40% antifreeze-water mixtureindirect working principlevacuum tube solar collector
collection DOAJ
language English
format Article
sources DOAJ
author Yildizhan Hasan
Sivrioglu Mecit
spellingShingle Yildizhan Hasan
Sivrioglu Mecit
Exergy analysis of a vacuum tube solar collector system having indirect working principle
Thermal Science
exergy analysis
40% antifreeze-water mixture
indirect working principle
vacuum tube solar collector
author_facet Yildizhan Hasan
Sivrioglu Mecit
author_sort Yildizhan Hasan
title Exergy analysis of a vacuum tube solar collector system having indirect working principle
title_short Exergy analysis of a vacuum tube solar collector system having indirect working principle
title_full Exergy analysis of a vacuum tube solar collector system having indirect working principle
title_fullStr Exergy analysis of a vacuum tube solar collector system having indirect working principle
title_full_unstemmed Exergy analysis of a vacuum tube solar collector system having indirect working principle
title_sort exergy analysis of a vacuum tube solar collector system having indirect working principle
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2017-01-01
description In this study, the energy and exergy analysis of a hot water preparation system, which is a boiler assisted vacuum tube solar collector, has been conducted. The obtained data were compared with reported results in the literature related to direct operating principle system. Average energy and exergy efficiencies of the experimental system were founded 12% and 0.3%, respectively. The average energy and exergy efficiencies of the vacuum tube solar collectors were founded 13.6% and 1.3%. Energy and exergy efficiencies of the vacuum tube solar collectors, which have indirect operating principle, are lower than direct system working with solar collectors. Maximum exergy loss has occurred in the vacuum tube solar collectors and followed it boiler and pump, respectively.
topic exergy analysis
40% antifreeze-water mixture
indirect working principle
vacuum tube solar collector
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600009Y.pdf
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