Gülen | Gas Turbine Combined Cycle Power Plants | Buch | 978-1-041-07726-8 | www.sack.de

Buch, Englisch, 658 Seiten, Format (B × H): 178 mm x 254 mm, Gewicht: 1352 g

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Gas Turbine Combined Cycle Power Plants


2. Auflage 2026
ISBN: 978-1-041-07726-8
Verlag: Taylor & Francis Ltd

Buch, Englisch, 658 Seiten, Format (B × H): 178 mm x 254 mm, Gewicht: 1352 g

ISBN: 978-1-041-07726-8
Verlag: Taylor & Francis Ltd


Gas Turbine Combined Cycle Power Plants discusses the solution of daily problems encountered in the design, development, optimization, operation, and maintenance of gas and steam turbine combined cycle power plants. It reflects developing trends within decarbonization and large power demand boost from hyperscale data centers accelerated by generative artifical intelligence (AI).

The book contains a wealth of first principles-based calculation methods comprising key formulae, charts, rules of thumb, and other tools developed by the author over the course of 30+ years spent in the power generation industry. The revised edition features new and expanded sections on integrated gasification combined cycle and carbon capture and new chapters on recent developments such as “hyperscalers” and the role of gas turbines in decarbonization, with a special focus on hydrogen.

This book is intended for original equipment manufacturers (OEMs), consulting engineers, and plant operators involved with the design of power plants and large-scale factories. It will also benefit research and development studies in both academia and government/industry laboratories.

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Zielgruppe


Academic, Postgraduate, and Professional Reference


Autoren/Hrsg.


Weitere Infos & Material


Section I Fundamentals 1. Introduction. 2. Prerequisites. 3. Bare Necessities. Section II Core Power Generation Components 4. Gas Turbine. 5. Steam Turbine. 6. Heat Recovery Steam Generator (HRSG). 7. Heat Sink Options. Section III Plant Systems and Implementation 8. Combining the Pieces. 9. Major Equipment. 10. Balance of Plant. 11. Construction and Commissioning. Section IV Operations and Optimization 12. Environmental Considerations. 13. Economics. 14. Cogeneration. 15. Operability. Section V Variations 16. Maintenance. 17. Repowering. 18. Coal Power. 19. Carbon Capture. Section VI Looking Forward 20. What Next?. 21. New Developments. 22. The New Frontier?. Technical Appendices Appendix A. Property Calculations. Appendix B. Standard Conditions for Temperature and Pressure. Appendix C. Exergetic Efficiency. Appendix D. Thermal Response Basics. Appendix E. Steam Turbine Stress Basics. Appendix F. Carbon Capture.


S. Can Gülen (PhD 1992, Rensselaer Polytechnic Institute, Troy, NY), PE, American Society of Mechanical Engineers (ASME) Fellow, and Bechtel Fellow, has more than 30 years of mechanical engineering experience covering a wide spectrum of technology, system, and software design, development (GTPRO/MASTER, Thermoflex), performance and cost assessment, and analysis, primarily in the field of steam and gas turbine combined cycle (109FB-SS, IGCC 207FB, H-System) process and power plant turbomachinery and thermodynamics (in Thermoflow, Inc., General Electric, and Bechtel). Dr. Gülen has authored/coauthored five books, two book chapters, numerous internal/external archival papers, and articles (70+), design practices, technical assessment reports, and US patents (25+) on gas/steam turbine power plant performance, cost, optimization, data reconciliation, analysis, and modeling.



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