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This book is a complete update of the classic 1981 FAST BREEDER REACTORS? textbook authored by Alan E. Waltar and Albert B. Reynolds, which , along with the Russian translation, served as a major reference book for fast reactors systems. Major updates include transmutation physics? (a key technology to? substantially? ameliorate? issues associated with the storage of high-level nuclear waste ), advances in fuels and materials technology?(including metal fuels and cladding materials capable of high-temperature and high burnup),? and new approaches to reactor safety (including passive safety technology),? New chapters on gas-cooled and lead-cooled fast spectrum reactors are also included.
Key international experts contributing to the text include Chaim Braun, (Stanford University) Ronald Omberg, (Pacific Northwest National Laboratory,? Massimo Salvatores (CEA, France), Baldev Raj, (Indira Gandhi Center for Atomic Research, India) , John Sackett (Argonne National Laboratory), Kevan Weaver, (TerraPower Corporation) ,James Seinicki(Argonne National Laboratory). Russell Stachowski (General Electric),? Toshikazu Takeda (University of Fukui, Japan), and Yoshitaka Chikazawa (Japan Atomic Energy Agency).
With a unique focus on the capabilities of fast spectrum reactors to address nuclear waste transmutation issues, this book describes how fast spectrum reactors contribute to the global nuclear renaissance while minimizing nuclear proliferation concerns.Part I: Overview.- Sustainable Development of Nuclear Energy and the Role of Fast Spectrum Reactors.- Introductory Design Considerations.- Economic Analysis of Fast Spectrum Reactors.- Part II: Neutronics.- Nuclear Design.- Nuclear Data and Cross Section Processing.- Kinetics, Reactivity Effects and Control Requirements.- Fuel Management.- Part III: Systems.- Fuel Pin and Assembly Design.- Fuel Pin Thermal Performance.- Core Thermal Hydraulics.- Core Materials.- RlS«
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