A review on the thermodynamic optimisation and modelling of the solar thermal Brayton cycle

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dc.contributor.author Le Roux, Willem Gabriel
dc.contributor.author Bello-Ochende, Tunde
dc.contributor.author Meyer, Josua P.
dc.date.accessioned 2014-02-20T11:56:19Z
dc.date.available 2014-02-20T11:56:19Z
dc.date.issued 2013-12
dc.description.abstract Many studies have been published on the performance and optimisation of the Brayton cycle and solar thermal Brayton cycle showing the potential, merits and challenges of this technology. Solar thermal Brayton systems have potential to be used as power plants in many sun-drenched countries. It can be very competitive in terms of efficiency, cost and environmental impact. When designing a system such as a recuperative Brayton cycle there is always a compromise between allowing effective heat transfer and keeping pressure losses in components small. The high temperatures required in especially the receiver of the system presents a challenge in terms of irreversibilities due to heat loss. In this paper, the authors recommend the use of the total entropy generation minimisation method. This method can be applied for the modelling of a system and can serve as validation when compared with first-law modelling. The authors review various modelling perspectives required to develop an objective function for solar thermal power optimisation, including modelling of the sun as an exergy source, the Gouy-Stodola theorem and turbine modelling. With recommendations, the authors of this paper wish to clarify and simplify the optimisation and modelling of the solar thermal Brayton cycle for future work. The work is applicable to solar thermal studies in general but focuses on the small-scale recuperated solar thermal Brayton cycle. en_US
dc.description.librarian hb2014 en_US
dc.description.sponsorship National Research Foundation (NRF) en_US
dc.description.uri http://www.elsevier.com/locate/rser en_US
dc.identifier.citation Le Roux, WG, Bello-Ochende, T & Meyer, JP 2013, 'A review on the thermodynamic optimisation and modelling of the solar thermal Brayton cycle', Renewable and Sustainable Energy Reviews, vol. 28, pp. 677-690. en_US
dc.identifier.issn 1364-0321 (print)
dc.identifier.issn 1879-0690 (online)
dc.identifier.other /10.1016/j.rser.2013.08.053
dc.identifier.uri http://hdl.handle.net/2263/36052
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.rights © 2013 Elsevier Ltd. All rights reserved. Notice : this is the author’s version of a work that was accepted for publication in Renewable and Sustainable Energy Reviews. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. Changes may have been made to this work since it was submitted for publication. A definitive version was subsequently published in Renewable and Sustainable Energy Reviews, vol. 28, pp. 677-690, 2013. doi : 10.1016/j.rser.2013.08.053 en_US
dc.subject Brayton cycle en_US
dc.subject Solar thermal Brayton cycle en_US
dc.subject Solar thermal power optimisation en_US
dc.subject Optimisation and modelling en_US
dc.title A review on the thermodynamic optimisation and modelling of the solar thermal Brayton cycle en_US
dc.type Postprint Article en_US


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