Reactor Physics Calculations For Applications In Nuclear Technology

Author: D E Cullen
Publisher: World Scientific
ISBN: 9814632449
Size: 30.83 MB
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Reactor Physics Calculations For Applications In Nuclear Technology from the Author: D E Cullen. This workshop was designed to meet the needs of those currently involved in or are planning a nuclear programme involving research and/or power fission reactors. The workshop had a broad scope including not only fission reactor core calculations, but also safety, fuel management, waste disposal reactor licensing. The lectures and computer exercises covered almost all aspects of the operation of fission reactors. This workshop introduced participants to the methods currently used in fission reactor calculations and to some computer codes in which these methods are used. Contents:Nuclear Data: Their Importance and Application in Fission Reactor Physics Calculations (J J Schmidt)Evaluated Nuclear Data Processing and Nuclear Reactor Calculations (A Trkov)Basic Reactor Physics (S H Levine)VVER Type Reactors (T Kulikowska)Preparation of Input for the WIMS Code (B Sadowska)Incore Fuel Management: PWR Group Constants Generation Using PSU-LEOPARD Code (D Pevec)Incore Fuel Management: PWR Calculations Using MCRAC (B G Petrovic)Nuclear Safety Parameters of Mixed TRIGA Cores (M Ravnik)Optimization of TRIGA Reactor Operation Using Reactor Calculations (I Mele)Computer Code ANISN Multiplying Media and Shielding Calculation I, II, III — Theory (J R Maiorino)Fluid Flow and Heat Transfer Model of the HEATHYD Code (R Nabbi)Reactor Neutron Dosimetry — Calculational Methods in Neutron Spectrum Unfolding (N P Kocherov)Advances in Personal Computers for Scientific Applications (D E Cullen)Review of Research Reactor Safety Documentation Developed by the International Atomic Energy Agency (N G Chrysochoides)and other papers Readership: Nuclear physicists.

Nuclear Reactor Physics

Author: Weston M. Stacey
Publisher: John Wiley & Sons
ISBN: 3527406794
Size: 31.24 MB
Format: PDF, Mobi
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Nuclear Reactor Physics from the Author: Weston M. Stacey. Nuclear reactor physics is the core discipline of nuclear engineering. Nuclear reactors now account for a significant portion of the electrical power generated worldwide, and new power reactors with improved fuel cycles are being developed. At the same time, the past few decades have seen an ever-increasing number of industrial, medical, military, and research applications for nuclear reactors. The second edition of this successful comprehensive textbook and reference on basic and advanced nuclear reactor physics has been completely updated, revised and enlarged to include the latest developments.

Fundamentals Of Nuclear Reactor Physics

Author: Elmer E. Lewis
Publisher: Academic Press
ISBN: 9780080560434
Size: 52.20 MB
Format: PDF
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Fundamentals Of Nuclear Reactor Physics from the Author: Elmer E. Lewis. Fundamentals of Nuclear Reactor Physics offers a one-semester treatment of the essentials of how the fission nuclear reactor works, the various approaches to the design of reactors, and their safe and efficient operation . It provides a clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their energy release. It provides in-depth discussion of neutron reactions, including neutron kinetics and the neutron energy spectrum, as well as neutron spatial distribution. It includes ample worked-out examples and over 100 end-of-chapter problems. Engineering students will find this applications-oriented approach, with many worked-out examples, more accessible and more meaningful as they aspire to become future nuclear engineers. · A clear, general overview of atomic physics from the standpoint of reactor functionality and design, including the sequence of fission reactions and their energy release · In-depth discussion of neutron reactions, including neutron kinetics and the neutron energy spectrum, as well as neutron spatial distribution · Ample worked-out examples and over 100 end-of-chapter problems · Full Solutions Manual

Nuclear Energy

Author: Raymond Murray
Publisher: Butterworth-Heinemann
ISBN: 9780080919447
Size: 50.44 MB
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Nuclear Energy from the Author: Raymond Murray. Nuclear Energy is one of the most popular texts ever published on basic nuclear physics, systems, and applications of nuclear energy. This newest edition continues the tradition of offering a holistic treatment of everything the undergraduate engineering student needs to know in a clear and accessible way. Presented is a comprehensive overview of radioactivity, radiation protection, nuclear reactors, waste disposal, and nuclear medicine. • New coverage on nuclear safety concerns following 9/11, including radiation and terrorism, nuclear plant security, and use of nuclear techniques to detect weapons materials • New facts on nuclear waste management, including the Yucca Mountain repository • New developments in the use of nuclear-powered systems for generating cheap and abundant hydrogen from water using nuclear technology • New information on prospects for new nuclear power reactors and their applications for electricity and desalination • New end-of-chapter Exercises and Answers, lists of Internet resources, and updated references. • New instructor web site including Solutions to Exercises and PowerPoint slides • New student web site containing computer programs for use with Computer Exercises

Reactor Core Monitoring

Author: Mihály Makai
Publisher: Springer
ISBN: 3319545760
Size: 63.95 MB
Format: PDF, ePub, Docs
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Reactor Core Monitoring from the Author: Mihály Makai. This book presents a comprehensive overview of the computerized core monitoring techniques currently employed at pressurized water reactor (PWR) and boiling water reactor (BWR) nuclear power plants. It also offers a brief overview of the corresponding techniques at research and materials testing reactors. The book combines detailed descriptions of the theoretical background and fundamental underlying principles as well as the practical applications of core surveillance. It not only provides numerous industrial examples to illustrate how complex computerized systems are able to support the safe operation of nuclear reactors, but also outlines some new application areas that were made possible only by state-of-the-art computing resources. Thanks to its practical approach, it serves as a valuable and practical reference book for readers interested in the surveillance of nuclear reactors, ranging from undergraduate and postgraduate students to researchers and experts working at research reactors and nuclear power plants, as well as at nuclear regulatory authorities.