Introduction to Safety and Reliability of Structures

Introduction to Safety and Reliability of Structures
Author: Jörg Schneider
Publsiher: IABSE
Total Pages: 115
Release: 2006
Genre: Building failures
ISBN: 9783857480935

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Structural engineers devote all their effort to meeting society¿s expectations efficiently. Engineers and scientists work together to develop solutions to structural problems. Given that nothing is absolutely and eternally safe, the goal is to attain an acceptably small probability of failure for a structure. Reliability analysis is part of the science and practice of engineering today, not only with respect to the safety of structures, but also for questions of serviceability and other requirements of technical systems that might be impacted by some probability. The present volume takes a rather broad approach to the safety of structures and related topics. It treats the underlying concepts of risk and safety and introduces the reader to the main concepts and strategies for dealing with hazards. A chapter is devoted to the processing of data into information that is relevant for applying reliability theory. The two main chapters deal with the modelling of structures and with methods of reliability analysis. Another chapter focuses on problems related to establishing target reliabilities, assessing existing structures, and on effective strategies against human error. The Appendix supports the application of the methods proposed and refers readers to a number of related computer programs.

Introduction to Safety and Reliability of Structures

Introduction to Safety and Reliability of Structures
Author: Jörg Schneider (Prof.)
Publsiher: Unknown
Total Pages: 148
Release: 2017
Genre: Reliability (Engineering)
ISBN: 1523112743

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Philosophies of Structural Safety and Reliability

Philosophies of Structural Safety and Reliability
Author: Vladimir Raizer,Isaac Elishakoff
Publsiher: CRC Press
Total Pages: 266
Release: 2022-07-28
Genre: Technology & Engineering
ISBN: 9781000550740

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Uncertainty is certain to be found in structural engineering, making it crucial to structure design. This book covers three competing philosophies behind structural safety and reliability: probabilistic analysis, fuzzy set-based treatments, and the convex approach. Explaining the theory behind probabilistic analysis, fuzzy set-based treatments, and the convex approach in detail, alongside their implementation, use, and benefits, the book compares and contrasts these methods, enabling the reader to solve problems associated with uncertainty. These uncertainty issues can be seen in civil engineering structures, risk of earthquakes, impact of rough seas on ships, and turbulence affecting aerospace vehicles. Building on the authors’ many years of experience in the field, Philosophies of Structural Safety and Reliability is an essential guide to structural uncertainty. Topics covered in the book include properties of materials and their structural deterioration, safety factor and reliability, risk evaluation and loads, and their combinations. This book will be of interest to students and professionals in the fields of aerospace, civil, mechanical, marine, and ocean engineering.

Risk Reliability and Uncertainty Quantification in Structural Engineering

Risk  Reliability and Uncertainty Quantification in Structural Engineering
Author: Naiwei Lu,Mohammad Noori
Publsiher: Momentum Press
Total Pages: 150
Release: 2019-05-24
Genre: Electronic Book
ISBN: 1947083368

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The primary purpose of this book is to introduce risk and reliability concept into structural design. A structure should be designed taking into account safety, reliability, and economy. Reliability is the probability of successful function, and risk is the potential for unwanted negative consequence of an event. In structural engineering, risk analysis involves the investigation of the probability of rare events. Risk analyses are typically made on the basis of information, which is subject to uncertainty. These uncertainties may be divided into inherent or natural variability. The objective of a structural design is the assurance of successful performance over the useful life of structures or engineering systems. The primary purpose of this book is to introduce risk and reliability concept into structural design. It will cover and review reliability theory and risk analysis to solve structural engineering problems. The book was formed from the easy to the difficult and complicated concepts. Content was written from the basic concepts of uncertainties, structural safety analysis, structural reliability under repeated load, and fatigue reliability. Based on the introduction of failure modes and bounds theory, structural system reliability theory is subsequently discussed. Numerical formulation and examples are provided to enhance the study efficiency of students, engineers, and researchers. This book is suitable for adoption as a textbook or a reference book in a structural reliability analysis course. Furthermore, this book also provides a theoretical foundation for better understanding of the structural safety assessment.

Safety Reliability Risk and Life Cycle Performance of Structures and Infrastructures

Safety  Reliability  Risk and Life Cycle Performance of Structures and Infrastructures
Author: George Deodatis,Bruce R. Ellingwood,Dan M. Frangopol
Publsiher: CRC Press
Total Pages: 1112
Release: 2014-02-10
Genre: Technology & Engineering
ISBN: 9781315884882

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Safety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures contains the plenary lectures and papers presented at the 11th International Conference on STRUCTURAL SAFETY AND RELIABILITY (ICOSSAR2013, New York, NY, USA, 16-20 June 2013), and covers major aspects of safety, reliability, risk and life-cycle performance of str

Methods of Structural Safety

Methods of Structural Safety
Author: H. O. Madsen,S. Krenk,Niels Christian Lind
Publsiher: Courier Corporation
Total Pages: 418
Release: 2006-01-01
Genre: Science
ISBN: 9780486445977

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Uncertainties about analytical models, fluctuations in loads, and variability of material properties contribute to the small but real probability of structure failures. This advanced engineering text describes methods developed to deal with stochastic aspects of structural behavior, providing a framework for evaluating, comparing, and combining stochastic effects. Starting with the general problem of consistent evaluation of the reliability of structures, the text proceeds to examination of the second-moment reliability index methods that describe failure in terms of one or more limit states. It presents first-order reliability methods for computation of failure probabilities for individual limit states and for systems; and it illustrates identification of the design parameters most affecting reliability. Additional subjects include a self-contained presentation of extreme-value theory and stochastic processes; stationary, evolutionary, and nonlinear aspects of stochastic response of structures; a stochastic approach to material fatigue damage and crack propagation; and stochastic models for several natural and manufactured loads.

Philosophies of Structural Safety and Reliability

Philosophies of Structural Safety and Reliability
Author: V. D. Raizer,Isaac Elishakoff
Publsiher: CRC Press
Total Pages: 0
Release: 2022-03
Genre: Electronic Book
ISBN: 1032209348

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Reliability of Structures Second Edition

Reliability of Structures  Second Edition
Author: Andrzej S. Nowak,Kevin R. Collins
Publsiher: CRC Press
Total Pages: 411
Release: 2012-12-20
Genre: Technology & Engineering
ISBN: 9780415675758

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Reliability of Structures enables both students and practising engineers to appreciate how to value and handle reliability as an important dimension of structural design. It discusses the concepts of limit states and limit state functions, and presents methodologies for calculating reliability indices and calibrating partial safety factors. It also supplies information on the probability distributions and parameters used to characterize both applied loads and member resistances. This revised and extended second edition contains more discussions of US and international codes and the issues underlying their development. There is significant revision and expansion of the discussion on Monte Carlo simulation, along with more examples. The book serves as a textbook for a one-semester course for advanced undergraduates or graduate students, or as a reference and guide to consulting structural engineers. Its emphasis is on the practical applications of structural reliability theory rather than the theory itself. Consequently, probability theory is treated as a tool, and enough is given to show the novice reader how to calculate reliability. Some background in structural engineering and structural mechanics is assumed. A solutions manual is available upon qualifying course adoption.