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English
Academic Press Inc
27 February 2019
Design of Solar Thermal Power Plants introduces the basic design methods of solar thermal power plants for technicians engaged in solar thermal power generation engineering. This book includes the author’s theoretical investigation and study findings in solar heat concentrators, a performance evaluation of solar thermal collectors, a numerical simulation of the heat transfer process between complex geometrics, heat transfer through radiation, and more. Containing theoretical descriptions of solar concentrators and receivers, practical engineering examples, and detailed descriptions of site selections for solar thermal power plants, this book has a strong theoretical and practical value for readers.

By:  
Imprint:   Academic Press Inc
Country of Publication:   United States
Dimensions:   Height: 229mm,  Width: 152mm, 
Weight:   770g
ISBN:   9780128156131
ISBN 10:   0128156139
Pages:   490
Publication Date:  
Audience:   Professional and scholarly ,  Undergraduate
Format:   Paperback
Publisher's Status:   Active
1. Introduction2. The Solar Resource and Meteorological Parameters3. General Design of a Solar Thermal Power Plant4. Design of the Concentration System5. Design of the Receiver System6. Thermal Storage Systems7. Site Selection, Power Load, and Power Generation Procedures8. Plant Layout Planning9. Main Powerhouse Layout10. Water Treatment Equipment and System11. Power System12. Electrical Equipment and System13. Thermal Automation14. Architecture and Structure15. Auxiliary and Affiliated Facilities16. Environmental Protection of the Concentrating Solar Power Plant

Zhifeng Wang, researcher at the Chinese Academy of Sciences and professor at the University of Chinese Academy of Sciences, received his PhD from Tsinghua University’s Department of Thermal Engineering. Dr. Wang’s research interests include solar thermal power generation technology, performance evaluation of the solar energy utilization system, flow and transfer of heat in the solar heat-collecting system, numerical simulation of the flow and heat-transfer process in the heat exchanger, heat transfer through radiation in complex gas media, numerical simulation of the heat-transfer process in complex geometrics, and performance evaluation methods for solar energy heat-utilization systems.

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