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Offshore Structural Engineering

Offshore Structural Engineering
Author: Srinivasan Chandrasekaran
Publisher: CRC Press
Total Pages: 254
Release: 2017-12-19
Genre: Technology & Engineering
ISBN: 1498765203

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Successfully estimate risk and reliability, and produce innovative, yet reliable designs using the approaches outlined in Offshore Structural Engineering: Reliability and Risk Assessment. A hands-on guide for practicing professionals, this book covers the reliability of offshore structures with an emphasis on the safety and reliability of offshore facilities during analysis, design, inspection, and planning. Since risk assessment and reliability estimates are often based on probability, the author utilizes concepts of probability and statistical analysis to address the risks and uncertainties involved in design. He explains the concepts with clear illustrations and tutorials, provides a chapter on probability theory, and covers various stages of the process that include data collection, analysis, design and construction, and commissioning. In addition, the author discusses advances in geometric structural forms for deep-water oil exploration, the rational treatment of uncertainties in structural engineering, and the safety and serviceability of civil engineering and other offshore structures. An invaluable guide to innovative and reliable structural design, this book: Defines the structural reliability theory Explains the reliability analysis of structures Examines the reliability of offshore structures Describes the probabilistic distribution for important loading variables Includes methods of reliability analysis Addresses risk assessment and more Offshore Structural Engineering: Reliability and Risk Assessment provides an in-depth analysis of risk analysis and assessment and highlights important aspects of offshore structural reliability. The book serves as a practical reference to engineers and students involved in naval architecture, ocean engineering, civil/structural, and petroleum engineering.


Risk in Structural Engineering

Risk in Structural Engineering
Author:
Publisher:
Total Pages: 63
Release: 2013
Genre: Construction industry
ISBN: 9781680155242

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Risk in Structural Engineering

Risk in Structural Engineering
Author:
Publisher:
Total Pages: 0
Release: 2013
Genre: Construction industry
ISBN: 9781906335083

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Risk Management in Civil, Mechanical, and Structural Engineering

Risk Management in Civil, Mechanical, and Structural Engineering
Author: M. James
Publisher: Thomas Telford
Total Pages: 194
Release: 1996
Genre: Business & Economics
ISBN: 9780727720634

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Provides details on the opportunities that can be drawn from the emerging science of risk management


Risk-based Structural Evaluation Methods

Risk-based Structural Evaluation Methods
Author: Michel Ghosn
Publisher:
Total Pages: 186
Release: 2020-01-02
Genre: Buildings
ISBN: 9780784415474

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This report examines the application of risk-based structural evaluation methods and provides best practice recommendations on their implementation in engineering practice.


Risk and Reliability Analysis

Risk and Reliability Analysis
Author: Vijay P. Singh
Publisher: Amer Society of Civil Engineers
Total Pages: 785
Release: 2007
Genre: Technology & Engineering
ISBN: 9780784408919

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Singh, Jain, and Tyagi present the key concepts of risk and reliability that apply to a wide array of problems in civil and environmental engineering.


Risk-based Structural Evaluation Methods

Risk-based Structural Evaluation Methods
Author: Michel Ghosn
Publisher:
Total Pages: 175
Release: 2019
Genre: Buildings
ISBN: 9781523129430

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Prepared by Technical Council on Life-Cycle Performance, Safety, Reliability, and Risk of Structural Systems of the Structural Engineering Institute of the American Society of Civil EngineersRisk-Based Structural Evaluation Methods: Best Practices and Development of Standards provides a comprehensive summary of the findings from a survey of attitudes of researchers, structural engineers, and government agencies to risk-informed structural engineering practices and a follow-up workshop. Risk analysis principles are well established from a theoretical point of view; however, a number of barriers have hampered a wide-scale implementation of risk-based methods in decision-making processes. This book examines the progress made on the application of risk-based structural evaluation methods (RBsEM) and provides recommendations to help enhance their implementation in engineering practice. The issues addressed includeRisk evaluation for new and existing structural systems, Hazard assessment and statistical projection of expected extreme natural and human-made events, Probabilistic analysis of structural systems, Assessment of physical damage to structures and infrastructure systems and evaluation of consequences, Estimation of associated direct and indirect losses and risk quantification, Risk communication to different stakeholders including the general public, Establishment of optimum risk acceptance criteria that take into consideration public attitudes toward risk, andPrioritization of risk mitigation strategies. This report will be a valuable resource for engineers, owners, regulators, and policy makers working toward implementation of RBsEM as the basis for managing our structure and infrastructure systems


Risk, Reliability and Uncertainty Quantification in Structural Engineering

Risk, Reliability and Uncertainty Quantification in Structural Engineering
Author: Naiwei Lu
Publisher: Momentum Press
Total Pages: 150
Release: 2019-05-24
Genre:
ISBN: 9781947083363

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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.


Philosophies of Structural Safety and Reliability

Philosophies of Structural Safety and Reliability
Author: Vladimir Raizer
Publisher: CRC Press
Total Pages: 266
Release: 2022-07-28
Genre: Technology & Engineering
ISBN: 1000550745

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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.