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ABSTRACT The annual production of fresh water that results from desalination of seawater in a hybrid scheme using fuel and concentrated solar energy captured by parabolic trough collector was assessed. Three months; January, March and June, were considered as representative of the scheme annual performance. The results are obtained utilizing in-house developed computer models to solve the conservation equations by the finite difference methods. When considering the production in the month of June as the desired annual production, the investigation reveals that the production of fresh water generated by solar drops for the months of March and January to about 73.9% and to 39.7%; respectively, compared to that of June. The low yield in the month of January is mainly attributed to the low altitude solar angle in addition to lower beam intensity. The low yield in the cold and mild seasons may be augmented by the naturally occurring rainfall as well as by traditional fuel. It is shown that for mild weather only 24.3% of fuel energy compared to the total heat required is necessary to bring production to full capacity, thus indicating the plausibility of the scheme for desalination. The aim of this study is to assist in the implementation of renewable energy resources in the field of seawater desalination. |
KEYWORDS solar desalination, yield of solar desalination, fuel augmenting solar desalination |
REFERENCES [1]. V.K. Jebasingh, G.M. Joselin Herbert. A review of solar parabolic trough collector. Renewable and Sustainable Energy Reviews, 54(2016)1085–1091. [1]. V.K. Jebasingh, G.M. Joselin Herbert. A review of solar parabolic trough collector. Renewable and Sustainable Energy Reviews, 54(2016)1085–1091. |
Cite this paper Amer Khalil Ababneh. (2016) Assessment of Annual Yield of Fresh Water from A Hybrid Desalination Scheme Utilizing Solar Parabolic Trough Collector Augmented by Fuel. International Journal of Environmental Science, 1, 151-155 |
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