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Nuclear Safety in Light Water Reactors Bal Raj Sehgal (Emeritus Chair Professor of Nuclear Power Safety, Royal Institute of Technology, Stockholm, Sweden)

Nuclear Safety in Light Water Reactors By Bal Raj Sehgal (Emeritus Chair Professor of Nuclear Power Safety, Royal Institute of Technology, Stockholm, Sweden)

Summary

Focuses on how to assess, prevent, and manage severe nuclear accidents in the light water reactors (LWRs) that pose the most risk to the public. This title explains how developments in the field of LWR severe accidents have provided accurate determinations of risk, thereby shedding light on the debates surrounding nuclear power safety.

Nuclear Safety in Light Water Reactors Summary

Nuclear Safety in Light Water Reactors: Severe Accident Phenomenology by Bal Raj Sehgal (Emeritus Chair Professor of Nuclear Power Safety, Royal Institute of Technology, Stockholm, Sweden)

This vital reference is the only one-stop resource on how to assess, prevent, and manage severe nuclear accidents in the light water reactors (LWRs) that pose the most risk to the public. LWRs are the predominant nuclear reactor in use around the world today, and they will continue to be the most frequently utilized in the near future. Therefore, accurate determination of the safety issues associated with such reactors is central to a consideration of the risks and benefits of nuclear power. This book emphasizes the prevention and management of severe accidents to teach nuclear professionals how to mitigate potential risks to the public to the maximum extent possible.

About Bal Raj Sehgal (Emeritus Chair Professor of Nuclear Power Safety, Royal Institute of Technology, Stockholm, Sweden)

Dr. Bal Raj Sehgal is recognized as one of the top-tier nuclear scientists in the world. He has contributed to the fields of reactor safety, physics, and engineering for 40+ years, through his involvement in R&D at two major US national laboratories (Argonne and Brookhaven), the Electric Power Research Institute, Purdue University, MIT, University of California at Berkeley and the Swedish Royal Institute of Technology. He is internationally recognized for his research publications, and for his many contributions to the profession, particularly in the realm of light water reactor design and analysis. Dr. Sehgal was appointed as Chair Professor of Nuclear Power Safety at the Royal Institute of Technology in 1991, where he initiated and developed a large research program on reactor safety, which is supported by the US, Sweden, Finland, Switzerland and the EU, and is considered to be one of the finest in the world. For the past 22 years, Dr. Sehgal has been active in the Severe Accident area, managing projects at major players such as Westinghouse, and General Electric, and serving as a reviewer to NRC and the OECD (CSNI). Dr. Seghal has lectured extensively at conferences and institutions across the globe, from Sao Paolo and Stuttgart to Beijing and Kyoto. Prof. Sehgal is active in the nuclear power safety community in the US, Japan, Europe and Sweden. He has been invited to provide expert review of the technical aspects of research programs from Italy to the US and Russia, and has coordinated several very large European Union (EU) research programs. Prof. Sehgal has published extensively over his career, having produced more than 360 peer-reviewed papers and reports in various esteemed journals and conference proceedings. He served as the North American Executive Editor of the Pergamon Press journal Progress in Nuclear Energy, and currently serves on the Editorial Board of Elsevier's journal, Nuclear Engineering and Design. He has been the recipient of many prestigious awards from the American Nuclear Society, including the Glenn Seaborg Medal, as well as the Distinguished Scientist Award from the Japan Atomic Energy Research Institute. He was elected a Fellow of the American Nuclear Society in 1983, a Fellow of the ASME in 1998, and as the foreign member of the Royal Swedish Academy of Engineering Sciences in 2003. 47 organizations from 24 countries (including Europe plus the USA, Canada, Korea, India, Japan) have come together to network their capacities of research in SARNET (Severe Accident Research NETwork of Excellence). Their aim is to resolve the most important remaining uncertainties and safety issues on severe accidents in existing and future water-cooled nuclear power plants. After a first project in the 6th Framework Programme (FP6) of the European Commission, the SARNET2 project, coordinated by the IRSN, started in April 2009 for 4 years in the FP7 frame. Joint research projects are performed by the partners through new experiments, physical modelling and model implementation in computer simulation codes. For dissemination of knowledge, the network organizes periodic education courses and it has gathered 45 authors to write this book, inclusive of approximately 30 years of research on the phenomenology of severe accidents.

Table of Contents

I. LIGHT WATER REACTOR (LWR) SAFETY, A HISTORICAL REVIEW II. IN-VESSEL CORE DEGRADATION III. EARLY CONTAINMENT FAILURE IV. LATE CONTAINMENT FAILURE V. FISSION PRODUCT RELEASE AND TRANSPORT VI. SEVERE ACCIDENT MANAGEMENT VII. ENVIRONMENTAL MANAGEMENT OF THE ACCIDENT VIII. INTEGRAL CODES FOR SEVERE ACCIDENT ANALYSES APPENDIX 1: Corium thermodynamics and thermophysics APPENDIX 2: Severe accidents in CANDU (PHWR)

Additional information

NPB9780123884466
9780123884466
0123884462
Nuclear Safety in Light Water Reactors: Severe Accident Phenomenology by Bal Raj Sehgal (Emeritus Chair Professor of Nuclear Power Safety, Royal Institute of Technology, Stockholm, Sweden)
New
Hardback
Elsevier Science Publishing Co Inc
2012-02-01
740
N/A
Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
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