Boiling Water Reactor Plant

Boiling Water Reactor Plant
Title Boiling Water Reactor Plant PDF eBook
Author United Engineers & Constructors, inc
Publisher
Pages 218
Release 1972
Genre Boiling water reactors
ISBN

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The Thermal-hydraulics of a Boiling Water Nuclear Reactor

The Thermal-hydraulics of a Boiling Water Nuclear Reactor
Title The Thermal-hydraulics of a Boiling Water Nuclear Reactor PDF eBook
Author Richard T. Lahey
Publisher
Pages 658
Release 1993
Genre Science
ISBN

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This edition of the classic monograph gives a comprehensive overview of the thermal-hydraulic technology underlying the design, operation, and safety assessment of boiling water reactors. In addition, new material on pressure suppression containment technology is presented.

Thermal Design of Nuclear Reactors

Thermal Design of Nuclear Reactors
Title Thermal Design of Nuclear Reactors PDF eBook
Author R. H. S. Winterton
Publisher Elsevier
Pages 206
Release 2014-04-23
Genre Technology & Engineering
ISBN 1483145247

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Thermal Design of Nuclear Reactors

Nuclear Safety in Light Water Reactors

Nuclear Safety in Light Water Reactors
Title Nuclear Safety in Light Water Reactors PDF eBook
Author Bal Raj Sehgal
Publisher Academic Press
Pages 732
Release 2012-01-05
Genre Technology & Engineering
ISBN 0123884462

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La 4e de couverture indique : Organizes and presents all the latest thought on LWR nuclear safety in one consolidated volume, provided by the top experts in the field, ensuring high-quality, credible and easily accessible information.

Nuclear Back-end and Transmutation Technology for Waste Disposal

Nuclear Back-end and Transmutation Technology for Waste Disposal
Title Nuclear Back-end and Transmutation Technology for Waste Disposal PDF eBook
Author Ken Nakajima
Publisher Springer
Pages 331
Release 2014-11-05
Genre Technology & Engineering
ISBN 4431551115

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This book covers essential aspects of transmutation technologies, highlighting especially the advances in Japan. The accident at the Fukushima Daiichi Nuclear Power Plant (NPP) has caused us to focus attention on a large amount of spent nuclear fuels stored in NPPs. In addition, public anxiety regarding the treatment and disposal of high-level radioactive wastes that require long-term control is growing. The Japanese policy on the back-end of the nuclear fuel cycle is still unpredictable in the aftermath of the accident. Therefore, research and development for enhancing the safety of various processes involved in nuclear energy production are being actively pursued worldwide. In particular, nuclear transmutation technology has been drawing significant attention after the accident. This publication is timely with the following highlights: 1) Development of accelerator-driven systems (ADSs), which is a brand-new reactor concept for transmutation of highly radioactive wastes; 2) Nuclear reactor systems from the point of view of the nuclear fuel cycle. How to reduce nuclear wastes or how to treat them including the debris from TEPCO’s Fukushima nuclear power stations is discussed; and 3) Environmental radioactivity, radioactive waste treatment and geological disposal policy. State-of-the-art technologies for overall back-end issues of the nuclear fuel cycle as well as the technologies of transmutation are presented here. The chapter authors are actively involved in the development of ADSs and transmutation-related technologies. The future of the back-end issues in Japan is very uncertain after the accident at the Fukushima Daiichi NPP and this book provides an opportunity for readers to consider the future direction of those issues.

The Risks of Nuclear Energy Technology

The Risks of Nuclear Energy Technology
Title The Risks of Nuclear Energy Technology PDF eBook
Author Günter Kessler
Publisher Springer
Pages 365
Release 2014-08-22
Genre Technology & Engineering
ISBN 3642551165

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The book analyses the risks of nuclear power stations. The security concept of reactors is explained. Measures against the spread of radioactivity after a severe accident, accidents of core melting and a possible crash of an air plane on reactor containment are discussed. The book covers three scientific subjects of the safety concepts of Light Water Reactors: – A first part describes the basic safety design concepts of operating German Pressurized Water Reactors and Boiling Water Reactors including accident management measures introduced after the reactor accidents of Three Mile Island and Chernobyl. These safety concepts are also compared with the experiences of the Fukushima accidents. In addition, the safety design concepts of the future modern European Pressurized Water Reactor (EPR) and of the future modern Boiling Water Reactor SWR-1000 (KERENA) are presented. These are based on new safety research results of the past decades. – In a second, part the possible crash of military or heavy commercial air planes on reactor containment is analyzed. It is shown that reactor containments can be designed to resist to such an airplane crash. – In a third part, an online decision system is presented. It allows to analyze the distribution of radioactivity in the atmosphere and to the environment after a severe reactor accident. It provides data for decisions to be taken by authorities for the minimization of radiobiological effects to the population. This book appeals to readers who have an interest in save living conditions and some understanding for physics or engineering.

Nuclear Reactor Kinetics and Plant Control

Nuclear Reactor Kinetics and Plant Control
Title Nuclear Reactor Kinetics and Plant Control PDF eBook
Author Yoshiaki Oka
Publisher Springer Science & Business Media
Pages 316
Release 2013-03-01
Genre Technology & Engineering
ISBN 4431541950

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Understanding time-dependent behaviors of nuclear reactors and the methods of their control is essential to the operation and safety of nuclear power plants. This book provides graduate students, researchers, and engineers in nuclear engineering comprehensive information on both the fundamental theory of nuclear reactor kinetics and control and the state-of-the-art practice in actual plants, as well as the idea of how to bridge the two. The first part focuses on understanding fundamental nuclear kinetics. It introduces delayed neutrons, fission chain reactions, point kinetics theory, reactivity feedbacks, and related measurement techniques. The second part helps readers to grasp the theories and practice of nuclear power plant control. It introduces control theory, nuclear reactor stability, and the operation and control of existing nuclear power plants such as a typical pressurized water reactor, a typical boiling water reactor, the prototype fast breeder reactor Monju, and the high-temperature gas-cooled test reactor (HTTR). Wherever possible, the design and operation data for these plants are provided.