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Seismic Analysis of Safety-related Nuclear Structures, and Commentary on Standard for Seismic Analysis of Safety Related Nuclear Structures

Seismic Analysis of Safety-related Nuclear Structures, and Commentary on Standard for Seismic Analysis of Safety Related Nuclear Structures
Author: American Society of Civil Engineers
Publisher: Amer Society of Civil Engineers
Total Pages: 91
Release: 1987-01-01
Genre: Technology & Engineering
ISBN: 9780872625822

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Seismic Analysis of Safety-related Nuclear Structures and Commentary

Seismic Analysis of Safety-related Nuclear Structures and Commentary
Author: American Society of Civil Engineers
Publisher: Amer Society of Civil Engineers
Total Pages: 118
Release: 2000
Genre: Technology & Engineering
ISBN: 9780784404331

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Provides requirements for performing analyses of new structure design or existing structure evaluation to determine the reliability of structures under earthquake motions. This work also outlines the rules and analysis parameters that are expected to produce seismic responses with about the same probability of non-exceedance as the input.


Seismic Analysis of Safety-related Nuclear Structures

Seismic Analysis of Safety-related Nuclear Structures
Author: American Society of Civil Engineers
Publisher:
Total Pages: 0
Release: 2017
Genre: Earthquake resistant design
ISBN: 9780784413937

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Standard ASCE/SEI 4-16 provides requirements to ensure the reliability of nuclear facilities under earthquake motions, focusing on analysis to obtain response information.


Earthquake Engineering for Nuclear Facilities

Earthquake Engineering for Nuclear Facilities
Author: Masanori Hamada
Publisher: Springer
Total Pages: 0
Release: 2018-07-05
Genre: Technology & Engineering
ISBN: 9789811096372

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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.


Seismic Risk Analysis of Nuclear Power Plants

Seismic Risk Analysis of Nuclear Power Plants
Author: Wei-Chau Xie
Publisher: Cambridge University Press
Total Pages: 631
Release: 2019-04-18
Genre: Technology & Engineering
ISBN: 1108752608

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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.