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Evaluation and Assessment of Nuclear Power Plant Seismic Methodology

Evaluation and Assessment of Nuclear Power Plant Seismic Methodology
Author:
Publisher:
Total Pages:
Release: 1977
Genre:
ISBN:

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The major emphasis of this study is to develop a methodology that can be used to assess the current methods used for assuring the seismic safety of nuclear power plants. The proposed methodology makes use of system-analysis techniques and Monte Carlo schemes. Also, in this study, we evaluate previous assessments of the current seismic-design methodology.


Methodologies for Seismic Safety Evaluation of Existing Nuclear Installations

Methodologies for Seismic Safety Evaluation of Existing Nuclear Installations
Author: IAEA
Publisher: International Atomic Energy Agency
Total Pages: 109
Release: 2020-08-26
Genre: Technology & Engineering
ISBN: 920106022X

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Experience shows that an assessment of the seismic capacity of an existing operating facility can be required for a number of reasons, for example identification of potential seismic vulnerabilities based on operating experience events or the periodic safety review programme. This publication covers the seismic safety evaluation programmes to be performed on existing nuclear installations in order to ensure that the required fundamental safety functions are available, with particular attention to the safe shutdown of reactors. It includes lessons learned based on the IAEA Action Plan on Nuclear Safety following the Fukushima Daiichi accident, and updated methodologies for seismic safety evaluation of nuclear installations.


Seismic Evaluation of Safety Systems at the Savannah River Reactors

Seismic Evaluation of Safety Systems at the Savannah River Reactors
Author:
Publisher:
Total Pages: 11
Release: 1989
Genre:
ISBN:

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A thorough review of all safety related systems in commercial nuclear power plants was prompted by the accident at the Three Mile Island Nuclear Power Plant. As a consequence of this review, the Nuclear Regulatory Commission (NRC) focused its attention on the environmental and seismic qualification of the industry's electrical and mechanical equipment. In 1980, the NRC issued Unresolved Safety Issue (USI) A-46 to verify the seismic adequacy of the equipment required to safely shut down a plant and maintain a stable condition for 72 hours. After extensive research by the NRC, it became apparent that traditional analysis and testing methods would not be a feasible mechanism to address this USI A-46 issue. The costs associated with utilizing the standard analytical and testing qualification approaches were exorbitant and could not be justified. In addition, the only equipment available to be shake table testing which is similar to the item being qualified is typically the nuclear plant component itself. After 8 years of studies and data collection, the NRC issued its ''Generic Safety Evaluation Report'' approving an alternate seismic qualification approach based on the use of seismic experience data. This experience-based seismic assessment approach will be the basis for evaluating each of the 70 pre-1972 commercial nuclear power units in the United States and for an undetermined number of nuclear plants located in foreign countries. This same cost-effective developed for the commercial nuclear power industry is currently being applied to the Savannah River Production Reactors to address similar seismic adequacy issues. This paper documents the results of the Savannah River Plant seismic evaluating program. This effort marks the first complete (non-trial) application of this state-of-the-art USI A-46 resolution methodology.


Seismic Design and Qualification for Nuclear Power Plants

Seismic Design and Qualification for Nuclear Power Plants
Author: International Atomic Energy Agency
Publisher: IAEA
Total Pages: 76
Release: 2003
Genre: Business & Economics
ISBN:

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This Safety Guide provides recommendations on a generally accepted way to design a nuclear power plant so that an earthquake motion at the site will not jeopardize the safety of the plant. It also gives guidance on a consistent application of methods and procedures for analysis, testing and qualification of structures and equipment so that they meet the safety requirements covering the design of nuclear power plants, safety assessments for the design and the regulatory issues concerned with the licensing of plants.


Evaluation of Seismic Safety for Nuclear Installations

Evaluation of Seismic Safety for Nuclear Installations
Author: IAEA
Publisher: International Atomic Energy Agency
Total Pages: 81
Release: 2024-02-07
Genre: Technology & Engineering
ISBN: 9201302231

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This Safety Guide provides recommendations on the seismic safety evaluation of nuclear installations. It addresses all types of new and existing nuclear installations. This Safety Guide presents three assessment methodologies: the deterministic approach, generally known as seismic margin assessment (SMA), seismic probabilistic safety assessment (SPSA), and a combination of SMA and SPSA known as ‘probabilistic safety assessment (PSA) based SMA. This Safety Guide provides specific recommendations on applying a performance-based graded approach to the seismic safety evaluation of nuclear installations other than nuclear power plants. It also covers the relation between seismic safety margins and defense-in-depth (DiD) level 3 and level 4. For new nuclear installations, this Safety Guide provides recommendations to assess adequacy of seismic margin to avoid cliff edge effects considering DiD level 3 and level 4. This publication is intended for use by regulatory bodies, operating organizations, and designers of nuclear installations.


Evolution of a Seismic Risk Assessment Technique

Evolution of a Seismic Risk Assessment Technique
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Total Pages:
Release: 1985
Genre:
ISBN:

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To assist the NRC in its licensing evaluation role the Seismic Safety Margins Research Program (SSMRP) was started at LLNL in 1978. Its goal was to develop tools and data bases to evaluate the probability of earthquake caused radioactive releases from commercial nuclear power plants. The methodology was finalized in 1982 and a seismic risk assessment of the Zion Nuclear Power Plant was finished in 1983. Work continues on the study of the LaSalle Boiling Water Reactor. This paper will discuss some of the effects of the assumptions made during development of the systems analysis techniques used in SSMRP in light of the results obtained on studies to date. 5 refs.


Earthquakes, Tsunamis and Nuclear Risks

Earthquakes, Tsunamis and Nuclear Risks
Author: Katsuhiro Kamae
Publisher: Springer
Total Pages: 177
Release: 2016-01-22
Genre: Technology & Engineering
ISBN: 4431558225

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This book covers seismic probabilistic risk assessment (S-PRA) and related studies which have become more important to increase the safety of nuclear facilities against earthquakes and tsunamis in the face of the many uncertainties after the Fukushima accident. The topics are (1) Active faults and active tectonics important for seismic hazard assessment of nuclear facilities,(2) Seismic source modeling and simulation and modeling techniques indispensable for strong ground motion prediction, and (3) PRA with external hazard and risk communication. The Fukushima accident has showed us the limitations of the deterministic evaluation approach to external events (an earthquake and tsunami) in which there are many uncertainties. Furthermore, public anxiety regarding nuclear safety because of an unexpected threat caused by an earthquake or tsunami is growing. The current policy on the estimation of the design basis of ground motion as well as tsunami height still has not been improved following the Fukushima accident. In particular, the risk concept in a nuclear system regarding seismic motion and a tsunami beyond the design basis is indispensable. Therefore, research and development for PRA enhancing nuclear safety are being actively pursued not only in Japan but also worldwide. This book provides an opportunity for readers to consider the future direction of nuclear safety vis-à-vis natural disasters.


Evaluation of Seismic Hazards for Nuclear Power Plants

Evaluation of Seismic Hazards for Nuclear Power Plants
Author:
Publisher: IAEA
Total Pages: 48
Release: 2002
Genre: Business & Economics
ISBN:

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This Safety Guide provides guidelines and recommends procedures for the evaluation of seismic hazards for nuclear power plants. Specifically, it provides recommendations on how to determine the ground motion hazards for a plant at a particular site and the potential for surface faulting, which could affect the feasibility of construction and safe operation of a plant at that site. The Guide supersedes IAEA Safety Series No. 50-SG-S1 (Rev.l), Earthquakes and Associated Topics in Relation to Nuclear Power plant Siting that was issued in 1991.


Review of Seismic Evaluation Methodologies for Nuclear Power Plants Based on a Benchmark Exercise

Review of Seismic Evaluation Methodologies for Nuclear Power Plants Based on a Benchmark Exercise
Author: International Atomic Energy Agency
Publisher:
Total Pages: 143
Release: 2014-04-29
Genre: Science
ISBN: 9789201149138

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This publication presents the results of the Kashiwazaki-Kariwa Research Initiative for Seismic Margin Assessment (KARISMA) benchmarking exercise to estimate how well the analytical results can predict the actual response and performance of structures, systems and components (SSCs) and to identify the areas that may need reinforcement, or highlight those areas where analytical results are not an accurate predictor of SSC performance.