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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - Bahman Zohuri
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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - copertina rigida, flessible

2015, ISBN: 3319155598

[EAN: 9783319155593], Neubuch, [PU: Springer International Publishing Mrz 2015], DYNAMIK (PHYSIKALISCH) / THERMODYNAMIK; WÄRMELEHRE COMBINEDCYCLEPOWERPLANT; NUCLEARENERGY; NUCLEARENGINEER… Altro …

NEW BOOK. Costi di spedizione:Versandkostenfrei. (EUR 0.00) BuchWeltWeit Inh. Ludwig Meier e.K., Bergisch Gladbach, Germany [57449362] [Rating: 5 (von 5)]
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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - nuovo libro

2015, ISBN: 3319155598

Introduces the concept of combined cycles for next generation nuclear power plants, explaining how recent advances in gas turbines have made these systems increasingly desirable for effic… Altro …

Nr. 63915323. Costi di spedizione:, 2-5 Werktage, DE. (EUR 0.00)
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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants An Innovative Design Approach - Zohuri, Bahman
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Zohuri, Bahman:
Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants An Innovative Design Approach - copertina rigida, flessible

2015

ISBN: 3319155598

2015 Gebundene Ausgabe Dynamik (physikalisch) / Thermodynamik, Thermodynamik, Wärmelehre / Thermodynamik, Kernenergie und Kerntechnik (Nuklearenergie, Nukleartechnik), CombinedCyclePowe… Altro …

Costi di spedizione:Versandkostenfrei innerhalb der BRD. (EUR 0.00) MARZIES.de Buch- und Medienhandel, 14621 Schönwalde-Glien
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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants: An Innovative Design Approach - copertina rigida, flessible

ISBN: 9783319155593

Hardback. New. Introduces the concept of combined cycles for next generation nuclear power plants, explaining how recent advances in gas turbines have made these systems increasingly des… Altro …

Costi di spedizione: EUR 11.83 The Saint Bookstore
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Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants

Introduces the concept of combined cycles for next generation nuclear power plants, explaining how recent advances in gas turbines have made these systems increasingly desirable for efficiency gains and cost-of-ownership reduction. Promulgates modelling and analysis techniques to identify opportunities for increased thermodynamic efficiency and decreased water usage over current Light Water Reactor (LWR) systems. Examines all power conversion aspects, from the fluid exiting the reactor to energy releases into the environment, with special focus on heat exchangers and turbo-machinery. Provides examples of small projects to facilitate nuanced understanding of the theories and implementation of combined-cycle nuclear plants. This book explores combined cycle driven efficiency of new nuclear power plants and describes how to model and analyze a nuclear heated multi-turbine power conversion system operating with atmospheric air as the working fluid. The included studies are intended to identify paths for future work on next generation nuclear power plants (GEN-IV), leveraging advances in natural-gas-fired turbines that enable coupling salt-cooled, helium-cooled, and sodium-cooled reactors to a Nuclear Air-Brayton Combined Cycle (NACC). These reactors provide the option of operating base-load nuclear plants with variable electricity output to the grid using natural gas or stored heat to produce peak power. The author describes overall system architecture, components and detailed modelling results of Brayton-Rankine Combined Cycle power conversion systems and Recuperated Brayton Cycle systems, since they offer the highest overall energy conversion efficiencies. With ever-higher temperatures predicted in GEN-IV plants, this book's investigation of potential avenues for thermodynamic efficiency gains will be of great interest to nuclear engineers and researchers, as well as power plant operators and students.

Informazioni dettagliate del libro - Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants


EAN (ISBN-13): 9783319155593
ISBN (ISBN-10): 3319155598
Copertina rigida
Anno di pubblicazione: 2015
Editore: Springer International Publishing

Libro nella banca dati dal 2015-04-29T16:01:01+02:00 (Zurich)
Pagina di dettaglio ultima modifica in 2024-01-19T14:09:18+01:00 (Zurich)
ISBN/EAN: 9783319155593

ISBN - Stili di scrittura alternativi:
3-319-15559-8, 978-3-319-15559-3
Stili di scrittura alternativi e concetti di ricerca simili:
Autore del libro : bahman zohuri
Titolo del libro: plant power, cycle, power book, nuclear power generation, generation plan, driven design


Dati dell'editore

Autore: Bahman Zohuri
Titolo: Combined Cycle Driven Efficiency for Next Generation Nuclear Power Plants - An Innovative Design Approach
Editore: Springer; Springer International Publishing
359 Pagine
Anno di pubblicazione: 2015-03-27
Cham; CH
Stampato / Fatto in
Lingua: Inglese
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XXIII, 359 p. 178 illus., 96 illus. in color.

BB; Hardcover, Softcover / Technik/Wärmetechnik, Energietechnik, Kraftwerktechnik; Kernenergie und Kerntechnik (Nuklearenergie, Nukleartechnik); Verstehen; Combined Cycle Power Plant; Nuclear Energy; Nuclear Engineering; Nuclear Power Plant; Nuclear Thermodynamics; Nuclear Energy; Thermodynamics; Thermodynamik und Wärme; EA; BC

Definitions and basic principles.- Properties of pure substances.- Thermodynamic cycles.- Heat transport system thermal hydraulics.- Energy resources and the role of nuclear energy.- New approach to energy conversion technology.- Gas turbine working principles.- Open air brayton gas power cycle.- Modeling the open air nuclear recuperated brayton cycle.- Modelica programming a new approach in modelling of CHP.
Introduces the concept of combined cycle nuclear plants, explaining how recent advances in gas turbines have made these systems increasingly desirable Promulgates modelling and analysis techniques to identify opportunities for increased thermodynamic efficiency and decreased water usage over current Light Water Reactor (LWR) systems Examines all power conversion aspects from the fluid exiting the reactor to the energy releases to the environment, with special focus on heat exchangers and turbo-machinery Provides examples of small projects to facilitate nuanced understanding of the theories and implementation of combined-cycle nuclear plants Includes supplementary material: sn.pub/extras

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