The Nuclear Fuel Of Pressurized Water Reactors And Fast Neutron Reactors
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The Nuclear Fuel of Pressurized Water Reactors and Fast Neutron Reactors by Henri Bailly,Denise Ménessier,Claude Prunier Pdf
This text discusses the design, manufacture and behaviour of nuclear fuel in pressurized water reactors (PWR) and fast reactors (FR). It reflects the knowledge of the French Agency for Nuclear Power (CEA) and other specialized companies in the field.
Super Light Water Reactors and Super Fast Reactors by Yoshiaki Oka,Seiichi Koshizuka,Yuki Ishiwatari,Akifumi Yamaji Pdf
Super Light Water Reactors and Super Fast Reactors provides an overview of the design and analysis of nuclear power reactors. Readers will gain the understanding of the conceptual design elements and specific analysis methods of supercritical-pressure light water cooled reactors. Nuclear fuel, reactor core, plant control, plant stand-up and stability are among the topics discussed, in addition to safety system and safety analysis parameters. Providing the fundamentals of reactor design criteria and analysis, this volume is a useful reference to engineers, industry professionals, and graduate students involved with nuclear engineering and energy technology.
United States. Energy Research and Development Administration. Division of Reactor Development and Demonstration
Author : United States. Energy Research and Development Administration. Division of Reactor Development and Demonstration Publisher : Unknown Page : 32 pages File Size : 46,6 Mb Release : 1976 Category : Nuclear reactors ISBN : MINN:20000003136476
This book is intended to provide an introduction to the basic principles of nuclear fission reactors for advanced undergraduate or graduate students of physics and engineering. The presentation is also suitable for physicists or engineers who are entering the nuclear power field without previous experience with nuclear reactors. No background knowledge is required beyond that typically acquired in the first two years of an undergraduate program in physics or engineering. Throughout, the emphasis is on explaining why particular reactor systems have evolved in the way they have, without going into great detail about reactor physics or methods of design analysis, which are already covered in a number of excellent specialist texts. The first two chapters serve as an introduction to the basic physics of the atom and the nucleus and to nuclear fission and the nuclear chain reaction. Chapter 3 deals with the fundamentals of nuclear reactor theory, covering neutron slowing down and the spatial dependence of the neutron flux in the reactor, based on the solution of the diffusion equations. The chapter includes a major section on reactor kinetics and control, including'tempera ture and void coefficients and xenon poisoning effects in power reactors. Chapter 4 describes various aspects offuel management and fuel cycles, while Chapter 5 considers materials problems for fuel and other constituents of the reactor. The processes of heat generation and removal are covered in Chapter 6.
What Is Generation IV Reactor The Generation IV International Forum is doing research on the commercial viability of a number of different nuclear reactor designs that fall under the umbrella term "generation IV reactors."They are driven by many different purposes, some of which include increased safety, enhanced sustainability, increased efficiency, and reduced costs. How You Will Benefit (I) Insights, and validations about the following topics: Chapter 1: Generation IV reactor Chapter 2: Nuclear reactor Chapter 3: Breeder reactor Chapter 4: Fast-neutron reactor Chapter 5: Integral fast reactor Chapter 6: Molten salt reactor Chapter 7: Nuclear fuel Chapter 8: Supercritical water reactor Chapter 9: High-temperature gas reactor Chapter 10: Lead-cooled fast reactor Chapter 11: Sodium-cooled fast reactor Chapter 12: Thorium fuel cycle Chapter 13: Liquid metal cooled reactor Chapter 14: Online refuelling Chapter 15: Liquid fluoride thorium reactor Chapter 16: Traveling wave reactor Chapter 17: List of small modular reactor designs Chapter 18: TerraPower Chapter 19: BN-1200 reactor Chapter 20: Integral Molten Salt Reactor Chapter 21: BREST (reactor) (II) Answering the public top questions about generation iv reactor. (III) Real world examples for the usage of generation iv reactor in many fields. (IV) 17 appendices to explain, briefly, 266 emerging technologies in each industry to have 360-degree full understanding of generation iv reactor' technologies. Who This Book Is For Professionals, undergraduate and graduate students, enthusiasts, hobbyists, and those who want to go beyond basic knowledge or information for any kind of generation iv reactor.
A Guidebook to Nuclear Reactors by Anthony V. Nero Pdf
Provides a detailed introduction to nuclear reactors, describing the four commercial types and discussing uranium resources, fuel cycles, advanced reactor systems, and issues and problems concerning the use of nuclear power
Status of Fast Reactor Research and Technology Development by International Atomic Energy Agency Pdf
"Based on a recommendation from the Technical Working Group on Fast Reactors, this publication is a regular update of previous publications on fast reactor technology. The publication provides comprehensive and detailed information on the technology of fast neutron reactors. The focus is on practical issues that are useful to engineers, scientists, managers, university students and professors. The main issues of discussion are experience in design, construction, operation and decommissioning, various areas of research and development, engineering, safety and national strategies, and public acceptance of fast reactors. In the summary the reader will find national strategies, international initiatives on innovative (i.e. Generation IV) systems and an assessment of public acceptance as related to fast reactors."--Résumé de l'éditeur.
Terms for Describing Advanced Nuclear Power Plants by IAEA Pdf
The terms for describing advanced nuclear power plants (NPPs) need to conform to the broad, general, common understanding by the public as well as by the technical community. This publication is a revision of IAEA-TECDOC-936 incorporating developments and initiatives since 1997 in the areas of advanced, evolutionary, and innovative nuclear reactor designs, description of design development phases, inclusive of relevant safety and regulatory terminology, consistent with current IAEA safety standards and glossaries. The objective of this publication is to provide Member States with up-to-date terms for describing advanced NPPs, to draw distinctions between design phases reflecting the maturities of designs, and to clarify definitions of commonly used terms in describing advanced NPPs.
The purpose of this book is to describe concepts related to advanced water reactors, with particular focus on Advanced Pressurized Water Reactors. It discusses the severe disadvantages which water reactors have with respect to uranium utilization. It also reveals new concepts in which the conversion ratio and the uranium utilization is improved. This interesting work includes information on various others ways used in addition to the increase in the conversion ratio. This is an informative, useful book for all nuclear scientists and engineers, and anyone who is interested in high converting water reactors.
Thorium Fuel Cycle by International Atomic Energy Agency Pdf
Provides a critical review of the thorium fuel cycle: potential benefits and challenges in the thorium fuel cycle, mainly based on the latest developments at the front end of the fuel cycle, applying thorium fuel cycle options, and at the back end of the thorium fuel cycle.
Sustainable and Safe Nuclear Fission Energy by Günter Kessler Pdf
Unlike existing books of nuclear reactor physics, nuclear engineering and nuclear chemical engineering this book covers a complete description and evaluation of nuclear fission power generation. It covers the whole nuclear fuel cycle, from the extraction of natural uranium from ore mines, uranium conversion and enrichment up to the fabrication of fuel elements for the cores of various types of fission reactors. This is followed by the description of the different fuel cycle options and the final storage in nuclear waste repositories. In addition the release of radioactivity under normal and possible accidental conditions is given for all parts of the nuclear fuel cycle and especially for the different fission reactor types.