Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq

Fresh water is the most essential basic need in daily life, while its sources are shrinking rapidly due to global warming and climate change. Desalination of sea water is seen as the potential solution to meet the scarcity of fresh water. In this article, a concentrated solar collector-based distill...

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Main Authors: Abed, Fayadh M., Eleiwi, Muhammad A., Hasanuzzaman, M., Islam, M. M., Mohammed, Khaleel I.
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Published: ELSEVIER 2020
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Online Access:http://eprints.um.edu.my/36193/
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spelling my.um.eprints.361932023-12-28T06:12:55Z http://eprints.um.edu.my/36193/ Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq Abed, Fayadh M. Eleiwi, Muhammad A. Hasanuzzaman, M. Islam, M. M. Mohammed, Khaleel I. T Technology (General) Fresh water is the most essential basic need in daily life, while its sources are shrinking rapidly due to global warming and climate change. Desalination of sea water is seen as the potential solution to meet the scarcity of fresh water. In this article, a concentrated solar collector-based distillation (evaporation and condensation) plant has been presented that desalinates brackish water in three consecutive stages. In the first stage, solar energy is absorbed by the solar collector and raises the heat transfer fluid (HTF) temperature that in turn heats up brackish water through heat exchanger and upon reaching the boiling point it starts boiling. The vapour rises to the tilt surface of the second still and gets condensed, condensate droplets being collected in a trough. On the other hand, evaporation and condensation in the second and third stages occur by reason of their latent heat. Performance of the three-stage solar water still has been analysed and optimized numerically in MATLAB; thereafter, outdoor experimental investigation is carried out from January to May 2018 in Tikrit, Iraq. Distillate production is found to depend on irradiation level, number of collectors and, operating and weather conditions. Experimental results show that average yield of distillate is 11.85 L/day and 30.97 L/day for the average irradiation of 358 W/m(2) and 720 W/m(2) respectively. The quality of distilled water totally complies with WHO standards. Detailed mathematical model of a solar desalination system has been proposed in this study that allows further extension and variation of such scheme. Such distillation plants can play an important role in supplying fresh water in remote arid places that are out of the reach of electrical grid. ELSEVIER 2020-12 Article PeerReviewed Abed, Fayadh M. and Eleiwi, Muhammad A. and Hasanuzzaman, M. and Islam, M. M. and Mohammed, Khaleel I. (2020) Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq. SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 42. ISSN 22131388, DOI https://doi.org/10.1016/j.seta.2020.100886 <https://doi.org/10.1016/j.seta.2020.100886>. 10.1016/j.seta.2020.100886
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 T Technology (General)
spellingShingle T Technology (General)
Abed, Fayadh M.
Eleiwi, Muhammad A.
Hasanuzzaman, M.
Islam, M. M.
Mohammed, Khaleel I.
Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
description Fresh water is the most essential basic need in daily life, while its sources are shrinking rapidly due to global warming and climate change. Desalination of sea water is seen as the potential solution to meet the scarcity of fresh water. In this article, a concentrated solar collector-based distillation (evaporation and condensation) plant has been presented that desalinates brackish water in three consecutive stages. In the first stage, solar energy is absorbed by the solar collector and raises the heat transfer fluid (HTF) temperature that in turn heats up brackish water through heat exchanger and upon reaching the boiling point it starts boiling. The vapour rises to the tilt surface of the second still and gets condensed, condensate droplets being collected in a trough. On the other hand, evaporation and condensation in the second and third stages occur by reason of their latent heat. Performance of the three-stage solar water still has been analysed and optimized numerically in MATLAB; thereafter, outdoor experimental investigation is carried out from January to May 2018 in Tikrit, Iraq. Distillate production is found to depend on irradiation level, number of collectors and, operating and weather conditions. Experimental results show that average yield of distillate is 11.85 L/day and 30.97 L/day for the average irradiation of 358 W/m(2) and 720 W/m(2) respectively. The quality of distilled water totally complies with WHO standards. Detailed mathematical model of a solar desalination system has been proposed in this study that allows further extension and variation of such scheme. Such distillation plants can play an important role in supplying fresh water in remote arid places that are out of the reach of electrical grid.
format Article
author Abed, Fayadh M.
Eleiwi, Muhammad A.
Hasanuzzaman, M.
Islam, M. M.
Mohammed, Khaleel I.
author_facet Abed, Fayadh M.
Eleiwi, Muhammad A.
Hasanuzzaman, M.
Islam, M. M.
Mohammed, Khaleel I.
author_sort Abed, Fayadh M.
title Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
title_short Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
title_full Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
title_fullStr Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
title_full_unstemmed Design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in Iraq
title_sort design, development and effects of operational conditions on the performance of concentrated solar collector based desalination system operating in iraq
publisher ELSEVIER
publishDate 2020
url http://eprints.um.edu.my/36193/
_version_ 1787133813160148992
score 13.188404