DocumentCode :
3577482
Title :
A 3 MWth parabolic trough CSP plant operating with air at up to 650 °C
Author :
Zanganeh, Giw ; Ambrosetti, Gianluca ; Pedretti, Andrea ; Zavattoni, Simone ; Barbato, Maurizio ; Good, Philipp ; Haselbacher, Andreas ; Steinfeld, Aldo
Author_Institution :
Airlight Energy SA, Biasca, Switzerland
fYear :
2014
Firstpage :
108
Lastpage :
113
Abstract :
Parabolic trough concentrating solar power (CSP) has long proven to be among the most viable options for large-scale solar electricity generation. However, conventional solar parabolic trough plants suffer from several technical and economical drawbacks. These include most notably a maximum operating temperature limited to below 450 °C, a difficulty in creating rigid metallic support structures with large trough apertures, and the need for complex thermal energy storage (TES) technologies. This has impelled the development of a novel trough-based CSP system comprising a 9 m aperture parabolic trough concentrator based on inflated metallized polymer films mounted on a concrete support structure, coupled to a solar receiver based on air as heat transfer fluid and to a packed bed of rocks sensible heat storage. The first power plant with this technology, with a nominal thermal power output of 3 MWth, has been constructed in Ait Baha, Morocco. We report on the details of the system and its components.
Keywords :
heat transfer; photovoltaic power systems; polymer films; solar absorber-convertors; thermal energy storage; Ait Baha; Morocco; complex thermal energy storage technologies; concrete support structure; heat storage; heat transfer fluid; inflated metallized polymer films; large trough apertures; large-scale solar electricity generation; maximum operating temperature; parabolic trough CSP plant; parabolic trough concentrating solar power; parabolic trough concentrator; rigid metallic support structures; solar parabolic trough plants; solar receiver; thermal power; trough-based CSP system; Concrete; CSP system; air; parabolic trough; pilot plant; solar receiver; thermal storage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Renewable and Sustainable Energy Conference (IRSEC), 2014 International
Print_ISBN :
978-1-4799-7335-4
Type :
conf
DOI :
10.1109/IRSEC.2014.7059884
Filename :
7059884
Link To Document :
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