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Review on Solar Ponds in Libya (PAST EFFORTS, CURRENT CHALLENGES AND FUTURE PROSPECTS)

Authors :
Abdulghani M. Ramadan
Khairy R. Agha
Source :
Solar Energy and Sustainable Development, Vol 7, Iss Si, Pp 62-79 (2018)
Publication Year :
2018
Publisher :
Libyan Center for Solar Energy REsearch and Studies, 2018.

Abstract

Solar and renewable energies applications got a great interest and attention in the last few decades. Problems related to CO2 emissions, air pollution, Ozone layer depletion, global warming and environment issues raise the necessity for getting a clean and safe energy. For this purpose, the Center for Solar Energy Studies (CSERS) in Libya conducted a huge research work in different applications for solar and renewable energies. One of these important activities is the Solar Gradient Solar Pond technology. It is an effective solar energy collection and storage system which presents a relatively simple and economic method of providing low grade energy with the advantage of annual storage cycle. This paper presents a general review on researches and studies on solar ponds that were conducted by CSERS research team. Tajoura’s Experimental Solar Pond (TESP) is designed as an experimental facility enabling the investigation of various aspects of pond performance. It is constructed by the Center for Solar Energy Studies, in joint cooperation with a Swiss company, with a surface area of about 830 m2, and a depth of 2.5 m, coupled with an evaporative pond of 105 m2 area and 1.5 m deep, equipped with all necessary equipments and measuring control system. The paper also shows the experience of operating MSF desalination unit coupled with TESP solar pond. Finally, other factors affecting the solar pond’s thermal stability were also discussed.

Details

Language :
Arabic, English
ISSN :
24119636 and 24146013
Volume :
7
Issue :
Si
Database :
Directory of Open Access Journals
Journal :
Solar Energy and Sustainable Development
Publication Type :
Academic Journal
Accession number :
edsdoj.6458b67786e24cb68b409cade0fa48b3
Document Type :
article