Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition

In this paper, the performances of a novel hybrid solar system using the Al2O3 nanofluid and pure water as a heat transfer fluid to operate a single-effect lithium bromide absorption chiller are investigated. In which the performance of the proposed system using the nanofluid during winter and summe...

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Main Authors: Bouguetaia, Nadia, Bellel, Nadir, Lekbir, Abdelhak
Format: Article
Published: ASME 2023
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Online Access:http://eprints.um.edu.my/38244/
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spelling my.um.eprints.382442023-07-05T08:26:48Z http://eprints.um.edu.my/38244/ Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition Bouguetaia, Nadia Bellel, Nadir Lekbir, Abdelhak TA Engineering (General). Civil engineering (General) In this paper, the performances of a novel hybrid solar system using the Al2O3 nanofluid and pure water as a heat transfer fluid to operate a single-effect lithium bromide absorption chiller are investigated. In which the performance of the proposed system using the nanofluid during winter and summer under mixed and forced convection is evaluated. Thus, the performances of the solar collector are investigated experimentally, and the output performances of the water-LiBr absorption chiller system are conducted numerically using matlab platform. The results show that the obtained Reynolds number of the heat transfer fluid is laminar flow in summer with the maximum values of 1700 and 1600 for nanofluid and water, respectively, and the maximum values of 2200 and 2100 for nanofluid and pure water, respectively, in winter. The proposed hybrid system achieves approximately 54% and 36% of maximum thermal efficiency during the winter and the summer, respectively. The obtained performance shows that the absorption cycle at positive evaporation temperatures is very appreciable using the nanofluid as working fluid during both seasons and quite satisfactory using the water during summer and winter seasons. Overall, the proposed system has potential for further development in the solar cooling system. ASME 2023-06 Article PeerReviewed Bouguetaia, Nadia and Bellel, Nadir and Lekbir, Abdelhak (2023) Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition. Journal of Thermal Science and Engineering Applications, 15 (6). ISSN 1948-5085, DOI https://doi.org/10.1115/1.4062125 <https://doi.org/10.1115/1.4062125>. 10.1115/1.4062125
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)
spellingShingle TA Engineering (General). Civil engineering (General)
Bouguetaia, Nadia
Bellel, Nadir
Lekbir, Abdelhak
Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
description In this paper, the performances of a novel hybrid solar system using the Al2O3 nanofluid and pure water as a heat transfer fluid to operate a single-effect lithium bromide absorption chiller are investigated. In which the performance of the proposed system using the nanofluid during winter and summer under mixed and forced convection is evaluated. Thus, the performances of the solar collector are investigated experimentally, and the output performances of the water-LiBr absorption chiller system are conducted numerically using matlab platform. The results show that the obtained Reynolds number of the heat transfer fluid is laminar flow in summer with the maximum values of 1700 and 1600 for nanofluid and water, respectively, and the maximum values of 2200 and 2100 for nanofluid and pure water, respectively, in winter. The proposed hybrid system achieves approximately 54% and 36% of maximum thermal efficiency during the winter and the summer, respectively. The obtained performance shows that the absorption cycle at positive evaporation temperatures is very appreciable using the nanofluid as working fluid during both seasons and quite satisfactory using the water during summer and winter seasons. Overall, the proposed system has potential for further development in the solar cooling system.
format Article
author Bouguetaia, Nadia
Bellel, Nadir
Lekbir, Abdelhak
author_facet Bouguetaia, Nadia
Bellel, Nadir
Lekbir, Abdelhak
author_sort Bouguetaia, Nadia
title Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
title_short Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
title_full Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
title_fullStr Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
title_full_unstemmed Absorption chiller system driven by the solar hybrid system: Case study in the algeria weather condition
title_sort absorption chiller system driven by the solar hybrid system: case study in the algeria weather condition
publisher ASME
publishDate 2023
url http://eprints.um.edu.my/38244/
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score 13.18916