Seismic Design for Nuclear Power Plants
Title | Seismic Design for Nuclear Power Plants PDF eBook |
Author | Robert J. Hansen |
Publisher | MIT Press (MA) |
Pages | 489 |
Release | 1970 |
Genre | Technology & Engineering |
ISBN | 9780262080415 |
The development of protective measures to guard against the spread of radioactive debris following reactor disasters has been given extensive and careful engineering attention over the past several years. Much of this attention has been devoted to eliminating or minimizing the effects of malfunctions of internal components. But reactors can also suffer externally caused disasters—for example, their radioactive cores can be damaged by earthquakes or by missiles generated by tornadoes. Earthquakes in particular will continue to render man vulnerable even to the "peaceful atom" as the number of nuclear power plants increases and as they come to be located in those parts of the world that have a history of seismic activity. It was to consider such problems that the seminar reported here was held. The conferees, who are leaders in this special and important field, gathered in Cambridge, Massachusetts, in spring 1969, to present the papers whose titles are listed below. Together they cover both the theoretical underpinnings of the subject and specific applications to nuclear reactors; they provide both useful summaries of what is known to date and some new thinking on the subject, not before published. Contents: Preface—T. J. Thompson. Foreword—R. J. Hansen. Introduction—R. V. Whitman. Geological and Seismological Factors Influencing the Assessment of a Seismic Threat to Nuclear Reactors—Daniel Linehan, S. J. Geophysics—Keiiti Aki. Design Seismic Inputs—C. Allin Cornell. Some Observations on Probabilistic Methods in the Seismic Design of Nuclear Power Plants—C. Allin Cornell. Seismic Risk and Seismic Design Decisions—Luis Esteva. Fundamentals of Soil Amplification—J. M. Roesset. Soil Structure Interaction—R. V. Whitman. Evaluation of Soil Properties for Site Evaluation and Dynamic Analysis of Nuclear Plants—R. V. Whitman. Structural Response to Seismic Input—J. M. Biggs. Seismic Analysis of Equipment Mounted on a Massive Structure—J. M. Biggs and J. M. Roesset. Modal Response of Containment Structures—Peter Jan Pahl. Provision of Required Seismic Resistance—M. J. Holley, Jr. A Measure of Earthquake Intensity—Arturo Arias. Closure—R. J. Hansen.
Seismic Design for Nuclear Power Plants
Title | Seismic Design for Nuclear Power Plants PDF eBook |
Author | Robert J. Hansen |
Publisher | |
Pages | 978 |
Release | 1970 |
Genre | |
ISBN |
Seismic Risk Analysis of Nuclear Power Plants
Title | Seismic Risk Analysis of Nuclear Power Plants PDF eBook |
Author | Wei-Chau Xie |
Publisher | Cambridge University Press |
Pages | 631 |
Release | 2019-04-18 |
Genre | Technology & Engineering |
ISBN | 1108752608 |
Seismic Risk Analysis of Nuclear Power Plants addresses the needs of graduate students in engineering, practicing engineers in industry, and regulators in government agencies, presenting the entire process of seismic risk analysis in a clear, logical, and concise manner. It offers a systematic and comprehensive introduction to seismic risk analysis of critical engineering structures focusing on nuclear power plants, with a balance between theory and applications, and includes the latest advances in research. It is suitable as a graduate-level textbook, for self-study, or as a reference book. Various aspects of seismic risk analysis - from seismic hazard, demand, and fragility analyses to seismic risk quantification, are discussed, with detailed step-by-step analysis of specific engineering examples. It presents a wide range of topics essential for understanding and performing seismic risk analysis, including engineering seismology, probability theory and random processes, digital signal processing, structural dynamics, random vibration, and engineering risk and reliability.
Seismic Design and Qualification for Nuclear Power Plants
Title | Seismic Design and Qualification for Nuclear Power Plants PDF eBook |
Author | International Atomic Energy Agency |
Publisher | IAEA |
Pages | 76 |
Release | 2003 |
Genre | Business & Economics |
ISBN |
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.
Seismic Design and Qualification for Nuclear Power Plants
Title | Seismic Design and Qualification for Nuclear Power Plants PDF eBook |
Author | |
Publisher | |
Pages | 96 |
Release | 1992 |
Genre | Business & Economics |
ISBN |
This guide was originally issued as Safety Guide No. 50-SG-S2. It provides details on the design of a nuclear power plant such that earthquakes at the site determined according to Safety Guide No. 50-SG-S1 will not jeopardize its safety.
Seismic Analysis of Safety-related Nuclear Structures, and Commentary on Standard for Seismic Analysis of Safety Related Nuclear Structures
Title | Seismic Analysis of Safety-related Nuclear Structures, and Commentary on Standard for Seismic Analysis of Safety Related Nuclear Structures PDF eBook |
Author | American Society of Civil Engineers |
Publisher | Amer Society of Civil Engineers |
Pages | 91 |
Release | 1987-01-01 |
Genre | Technology & Engineering |
ISBN | 9780872625822 |
Earthquake Engineering for Nuclear Facilities
Title | Earthquake Engineering for Nuclear Facilities PDF eBook |
Author | Masanori Hamada |
Publisher | Springer |
Pages | 304 |
Release | 2016-12-12 |
Genre | Technology & Engineering |
ISBN | 9811025169 |
This book is a comprehensive compilation of earthquake- and tsunami-related technologies and knowledge for the design and construction of nuclear facilities. As such, it covers a wide range of fields including civil engineering, architecture, geotechnical engineering, mechanical engineering, and nuclear engineering, for the development of new technologies providing greater resistance against earthquakes and tsunamis. It is crucial both for students of nuclear energy courses and for young engineers in nuclear power generation industries to understand the basics and principles of earthquake- and tsunami-resistant design of nuclear facilities. In Part I, "Seismic Design of Nuclear Power Plants", the design of nuclear power plants to withstand earthquakes and tsunamis is explained, focusing on buildings, equipment's, and civil engineering structures. In Part II, "Basics of Earthquake Engineering", fundamental knowledge of earthquakes and tsunamis as well as the dynamic response of structures and foundation ground are explained.