Risk Informed Regulation of Nuclear Facilities

Risk Informed Regulation of Nuclear Facilities PDF

Author: International Atomic Energy Agency

Publisher: IAEA

Published: 2005

Total Pages: 82

ISBN-13:

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This report contains guidance on the use of risk information by a regulatory body as part of an integrated decision-making process, covering risk informed decision making and risk informed regulation processes. It considers the advantages and potential safety benefits of risk informed regulation, as well as possible problem areas and expected difficulties.

Risk Informed Regulation of Nuclear Facilities

Risk Informed Regulation of Nuclear Facilities PDF

Author: IAEA.

Publisher:

Published: 2005

Total Pages: 78

ISBN-13:

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This report provides guidance on the use of risk information by a regulatory body as part of an integrated decision making process. This addresses the way in which risk information is being used as part of an integrated process in making decisions about safety issues at nuclear plants, sometimes referred to risk informed decision making, and how risk information is being used by a regulatory body as an input into the activities that it carries out, sometimes referred to as risk informed regulation.

Risk and Safety Analysis of Nuclear Systems

Risk and Safety Analysis of Nuclear Systems PDF

Author: John C. Lee

Publisher: John Wiley & Sons

Published: 2012-01-12

Total Pages: 504

ISBN-13: 1118043456

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The book has been developed in conjunction with NERS 462, a course offered every year to seniors and graduate students in the University of Michigan NERS program. The first half of the book covers the principles of risk analysis, the techniques used to develop and update a reliability data base, the reliability of multi-component systems, Markov methods used to analyze the unavailability of systems with repairs, fault trees and event trees used in probabilistic risk assessments (PRAs), and failure modes of systems. All of this material is general enough that it could be used in non-nuclear applications, although there is an emphasis placed on the analysis of nuclear systems. The second half of the book covers the safety analysis of nuclear energy systems, an analysis of major accidents and incidents that occurred in commercial nuclear plants, applications of PRA techniques to the safety analysis of nuclear power plants (focusing on a major PRA study for five nuclear power plants), practical PRA examples, and emerging techniques in the structure of dynamic event trees and fault trees that can provide a more realistic representation of complex sequences of events. The book concludes with a discussion on passive safety features of advanced nuclear energy systems under development and approaches taken for risk-informed regulations for nuclear plants.

Risk-informed Assessment of Regulatory and Design Requirements for Future Nuclear Power Plants. Annual Report

Risk-informed Assessment of Regulatory and Design Requirements for Future Nuclear Power Plants. Annual Report PDF

Author:

Publisher:

Published: 2000

Total Pages: 225

ISBN-13:

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OAK B188 Risk-informed assessment of regulatory and design requirements for future nuclear power plants. Annual report. The overall goal of this research project is to support innovation in new nuclear power plant designs. This project is examining the implications, for future reactors and future safety regulation, of utilizing a new risk-informed regulatory system as a replacement for the current system. This innovation will be made possible through development of a scientific, highly risk-formed approach for the design and regulation of nuclear power plants. This approach will include the development and/or confirmation of corresponding regulatory requirements and industry standards. The major impediment to long term competitiveness of new nuclear plants in the U.S. is the capital cost component--which may need to be reduced on the order of 35% to 40% for Advanced Light Water Reactors (ALWRS) such as System 80+ and Advanced Boiling Water Reactor (ABWR). The required cost reduction for an ALWR such as AP600 or AP1000 would be expected to be less. Such reductions in capital cost will require a fundamental reevaluation of the industry standards and regulatory bases under which nuclear plants are designed and licensed. Fortunately, there is now an increasing awareness that many of the existing regulatory requirements and industry standards are not significantly contributing to safety and reliability and, therefore, are unnecessarily adding to nuclear plant costs. Not only does this degrade the economic competitiveness of nuclear energy, it results in unnecessary costs to the American electricity consumer. While addressing these concerns, this research project will be coordinated with current efforts of industry and NRC to develop risk-informed, performance-based regulations that affect the operation of the existing nuclear plants; however, this project will go further by focusing on the design of new plants.