Site Suitability and Hazard Assessment Guide for Small Modular Reactors

Site Suitability and Hazard Assessment Guide for Small Modular Reactors PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Commercial nuclear reactor projects in the U.S. have traditionally employed large light water reactors (LWR) to generate regional supplies of electricity. Although large LWRs have consistently dominated commercial nuclear markets both domestically and abroad, the concept of small modular reactors (SMRs) capable of producing between 30 MW(t) and 900 MW(t) to generating steam for electricity is not new. Nor is the idea of locating small nuclear reactors in close proximity to and in physical connection with industrial processes to provide a long-term source of thermal energy. Growing problems associated continued use of fossil fuels and enhancements in efficiency and safety because of recent advancements in reactor technology suggest that the likelihood of near-term SMR technology(s) deployment at multiple locations within the United States is growing. Many different types of SMR technology are viable for siting in the domestic commercial energy market. However, the potential application of a particular proprietary SMR design will vary according to the target heat end-use application and the site upon which it is proposed to be located. Reactor heat applications most commonly referenced in connection with the SMR market include electric power production, district heating, desalinization, and the supply of thermal energy to various processes that require high temperature over long time periods, or a combination thereof. Indeed, the modular construction, reliability and long operational life purported to be associated with some SMR concepts now being discussed may offer flexibility and benefits no other technology can offer. Effective siting is one of the many early challenges that face a proposed SMR installation project. Site-specific factors dealing with support to facility construction and operation, risks to the plant and the surrounding area, and the consequences subsequent to those risks must be fully identified, analyzed, and possibly mitigated before a license will be granted to construct and operate a nuclear facility. Examples of significant site-related concerns include area geotechnical and geological hazard properties, local climatology and meteorology, water resource availability, the vulnerability of surrounding populations and the environmental to adverse effects in the unlikely event of radionuclide release, the socioeconomic impacts of SMR plant installation and the effects it has on aesthetics, proximity to energy use customers, the topography and area infrastructure that affect plant constructability and security, and concerns related to the transport, installation, operation and decommissioning of major plant components.

Reactor Safety Study, an Assessment of Accident Risks in U.S. Commercial Nuclear Power Plants

Reactor Safety Study, an Assessment of Accident Risks in U.S. Commercial Nuclear Power Plants PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 240

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Federal Regulatory Guide

Federal Regulatory Guide PDF Author: CQ Press,
Publisher: CQ Press
ISBN: 1071920561
Category : Political Science
Languages : en
Pages : 2046

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Book Description
The Nineteenth Edition of the Federal Regulatory Directory is a comprehensive guide for understanding the complex world of federal regulation. It provides detailed profiles of the most important regulatory agencies, including their history, priorities, actions, and landmark decisions. The book also features overviews of independent and self-regulatory agencies, as well as the global and state-level impacts of federal regulation. Whether you are new to the topic or an expert, the Federal Regulatory Directory can be a valuable resource for students, researchers, professionals, and anyone who wants to understand how federal regulation works and how it affects their daily lives.

A Framework to Expand and Advance Probabilistic Risk Assessment to Support Small Modular Reactors

A Framework to Expand and Advance Probabilistic Risk Assessment to Support Small Modular Reactors PDF Author:
Publisher:
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Category :
Languages : en
Pages :

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Book Description
During the early development of nuclear power plants, researchers and engineers focused on many aspects of plant operation, two of which were getting the newly-found technology to work and minimizing the likelihood of perceived accidents through redundancy and diversity. As time, and our experience, has progressed, the realization of plant operational risk/reliability has entered into the design, operation, and regulation of these plants. But, to date, we have only dabbled at the surface of risk and reliability technologies. For the next generation of small modular reactors (SMRs), it is imperative that these technologies evolve into an accepted, encompassing, validated, and integral part of the plant in order to reduce costs and to demonstrate safe operation. Further, while it is presumed that safety margins are substantial for proposed SMR designs, the depiction and demonstration of these margins needs to be better understood in order to optimize the licensing process.

Risk-Informing Small Modular Reactor Safety Analysis

Risk-Informing Small Modular Reactor Safety Analysis PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

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Book Description


Safety Assessment for Research Reactors and Preparation of the Safety Analysis Report: IAEA Safety Standards Series No. Ssg-20 (Rev.1)

Safety Assessment for Research Reactors and Preparation of the Safety Analysis Report: IAEA Safety Standards Series No. Ssg-20 (Rev.1) PDF Author: International Atomic Energy Agency
Publisher: International Atomic Energy Agency
ISBN: 9789201415219
Category : Technology & Engineering
Languages : en
Pages : 0

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Book Description
This Safety Guide provides recommendations on the safety assessment for research reactors in the authorization process, and on performance of safety analysis and preparation of the safety analysis report. It also incorporates the relevant lessons learned from the accident at the Fukushima Daiichi nuclear power plant and elaborates guidance on interfaces between nuclear safety and nuclear security. The recommendations in this Safety Guide are intended for operating organizations of research reactors; it can also be used by designers performing a safety assessment for a research reactor. Furthermore, this guide provides useful guidance for regulatory bodies performing a review and assessment of submitted safety analysis reports as an important document within authorization process. This Safety Guide is a revision of IAEA Safety Standards Series No. SSG-20, which it supersedes.

Reactor Safety Study

Reactor Safety Study PDF Author: US Nuclear Regulatory Commission
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Performance and Safety Analysis of a Generic Small Modular Reactor

Performance and Safety Analysis of a Generic Small Modular Reactor PDF Author: Evans Damenortey Kitcher
Publisher:
ISBN:
Category :
Languages : en
Pages : 93

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Book Description
The high and ever growing demand for electricity coupled with environmental concerns and a worldwide desire to shed petroleum dependence, all point to a shift to utilization of renewable sources of energy. The under developed nature of truly renewable energy sources such as, wind and solar, along with their limitations on the areas of applicability and the energy output calls for a renaissance in nuclear energy. In this second nuclear era, deliberately small reactors are poised to play a major role with a number of Small Modular Reactors (SMRs) currently under development in the U.S. In this work, an SMR model of the Integral Pressurized Water Reactor (IPWR) type is created, analyzed and optimized to meet the publically available performance criteria of the mPower SMR from B&W. The Monte Carlo codes MCNP5/MCNPX are used to model the core. Fuel enrichment, core inventory, core size are all variables optimized to meet the set goals of core lifetime and fuel utilization (burnup). Vital core behavior characteristics such as delayed neutron fraction and reactivity coefficients are calculated and shown to be typical of larger PWR systems, which is necessary to ensure the inherent safety and to achieve rapid deployment of the reactor by leveraging the vast body of operational experience amassed with the larger commercial PWRs. Inherent safety of the model is analyzed with the results of an analytical single channel analysis showing promising behavior in terms of axial and radial fuel element temperature distributions, the critical heat flux, and the departure from nucleate boiling ratio. The new fleet of proposed SMRs is intended to have increased proliferation resistance (PR) compared to the existing fleet of operating commercial PWRs. To quantify this PR gain, a PR analysis is performed using the Proliferation Resistance Analysis and Evaluation Tool for Observed Risk (PRAETOR) code developed by the Nuclear Science and Security Policy Institute at Texas A&M University. The PRAETOR code uses multi-attribute utility analysis to combine 63 factors affecting the PR value of a facility into a single metric which is easily comparable. The analysis compared hypothetical spent fuel storage facilities for the SMR model spent fuel assembly and one for spent fuel from a Westinghouse AP1000. The results showed that from a fuel material standpoint, the SMR and AP1000 had effectively the same PR value. Unable to analyze security systems and methods employed at specific nuclear power plant sites, it is premature to conclude that the SMR plants will not indeed show increased PR as intended. The electronic version of this dissertation is accessible from http://hdl.handle.net/1969.1/148135

Safety Assessment for Research Reactors and Preparation of the Safety Analysis Report

Safety Assessment for Research Reactors and Preparation of the Safety Analysis Report PDF Author: International Atomic Energy Agency
Publisher:
ISBN: 9789201154101
Category : Political Science
Languages : en
Pages : 118

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Book Description
This publication is a revision of IAEA Safety Series No. 35-G1, and experience acquired from the use of that Safety Guide has been taken into account. The present publication provides guidance on performing safety assessments throughout the lifetime of a research reactor and on the regulatory review of this assessment within the framework of the licensing process. Guidance on preparation of the safety analysis report, including its format and contents, is also provided. Contents: 1. Introduction; 2. Safety assessment in the licensing process; 3. Preparation of the safety analysis report; 4. Information to be submitted for the review and assessment process; Appendix: Content of a safety analysis report; Annex I: Approach to and methods of safety analysis; Annex II: Examples of input parameters and initial conditions; Annex III: Items to be considered in the description of the research reactor; Annex IV: Typical radiation sources and radiation fields in a research reactor.

Handbook of Small Modular Nuclear Reactors

Handbook of Small Modular Nuclear Reactors PDF Author: Daniel T. Ingersoll
Publisher: Woodhead Publishing
ISBN: 0128239174
Category : Technology & Engineering
Languages : en
Pages : 648

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Book Description
Handbook of Small Modular Nuclear Reactors, Second Edition is a fully updated comprehensive reference on Small Modular Reactors (SMRs), which reflects the latest research and technological advances in the field from the last five years. Editors Daniel T. Ingersoll and Mario D. Carelli, along with their team of expert contributors, combine their wealth of collective experience to update this comprehensive handbook that provides the reader with all required knowledge on SMRs, expanding on the rapidly growing interest and development of SMRs around the globe. This book begins with an introduction to SMRs for power generation, an overview of international developments, and an analysis of Integral Pressurized Water Reactors as a popular class of SMRs. The second part of the book is dedicated to SMR technologies, including physics, components, I&C, human-system interfaces and safety aspects. Part three discusses the implementation of SMRs, covering economic factors, construction methods, hybrid energy systems and licensing considerations. The fourth part of the book provides an in-depth analysis of SMR R&D and deployment of SMRs within eight countries, including the United States, Republic of Korea, Russia, China, Argentina, and Japan. This edition includes brand new content on the United Kingdom and Canada, where interests in SMRs have increased considerably since the first edition was published. The final part of the book adds a new analysis of the global SMR market and concludes with a perspective on SMR benefits to developing economies. This authoritative and practical handbook benefits engineers, designers, operators, and regulators working in nuclear energy, as well as academics and graduate students researching nuclear reactor technologies. Presents the latest research on SMR technologies and global developments Includes new case study chapters on the United Kingdom and Canada and a chapter on global SMR markets Discusses new technologies such as floating SMRs and molten salt SMRs