DocumentCode
189103
Title
Modeling and control of a Linear Fresnel Collector system
Author
Dominguez, Luis F. ; Klasing, Freerk ; Mercangoz, Mehmet
Author_Institution
Corp. Res., ABB Switzerland Ltd., Baden-Dättwil, Switzerland
fYear
2014
fDate
24-27 June 2014
Firstpage
1042
Lastpage
1048
Abstract
Linear Fresnel solar thermal power plants operating with direct steam generation (DSG) cycles offer an opportunity for integrating renewable energy into the grid. Moreover, understanding the transient behavior of the technology is essential for deriving efficient control strategies that ensure their safe and efficient operation. In this regard, a dynamic non-linear model is developed and implemented in Matlab/Simulink to study the DSG process in horizontal absorber pipes presenting single and parallel-row configurations. Using the developed model, the impact of partial shading of the collector field on the flow rate distribution of a two-parallel-row absorber system is then investigated. Additional simulations considering the interaction between the absorber and a two-phase-separator system are also carried out. The integrated system is then utilized to study the response to irradiation disturbances that occur during normal plant operation. Finally, two control strategies, which minimize impact of irradiation disturbances, are described.
Keywords
renewable energy sources; solar power stations; thermal power stations; DSG cycles; Matlab/Simulink; collector field; control strategies; direct steam generation; dynamic nonlinear model; flow rate distribution; horizontal absorber pipes; irradiation disturbances; linear Fresnel collector system; linear Fresnel solar thermal power plants; modeling; parallel-row configurations; partial shading; plant operation; renewable energy; transient behavior; two-parallel-row absorber system; two-phase-separator system; Equations; Fluids; Mathematical model; Particle separators; Power generation; Radiation effects; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Control Conference (ECC), 2014 European
Conference_Location
Strasbourg
Print_ISBN
978-3-9524269-1-3
Type
conf
DOI
10.1109/ECC.2014.6862351
Filename
6862351
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