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Reliability and Optimization of Structural Systems: Assessment, Design, and Life-Cycle Performance

Reliability and Optimization of Structural Systems: Assessment, Design, and Life-Cycle Performance
Author: Dan M. Frangopol
Publisher: CRC Press
Total Pages: 280
Release: 2007-10-18
Genre: Science
ISBN: 0203932218

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Focussing on structural reliability methods, reliability-based optimization, structural system reliability and risk analysis, lifetime performance and various applications in civil engineering. Invaluable to all concerned with structural system reliability and optimization, especially students, engineers, and workers in research and development.


Reliability and Optimization of Structural Systems

Reliability and Optimization of Structural Systems
Author: Dan M. Frangopol
Publisher:
Total Pages: 0
Release: 2007
Genre:
ISBN: 9781134134571

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Focussing on structural reliability methods, reliability-based optimization, structural system reliability and risk analysis, lifetime performance and various applications in civil engineering. Invaluable to all concerned with structural system reliability and optimization, especially students, engineers, and workers in research and development.


Life-cycle of Structural Systems

Life-cycle of Structural Systems
Author: Hitoshi Furuta
Publisher: Routledge
Total Pages: 214
Release: 2018-12-07
Genre: Technology & Engineering
ISBN: 1351204580

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This book aims to promote the study, research and applications in the design, assessment, prediction, and optimal management of life-cycle performance, safety, reliability, and risk of civil structures and infrastructure systems. The contribution in each chapter presents state-of-the-art as well as emerging applications related to key aspects of the life-cycle civil engineering field. The chapters in this book were originally published as a special issue of Structure and Infrastructure Engineering.


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
Publisher: CRC Press
Total Pages: 1112
Release: 2014-02-10
Genre: Technology & Engineering
ISBN: 1315884887

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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


Reliability and Optimization of Structural Systems

Reliability and Optimization of Structural Systems
Author: Daniel Straub
Publisher: CRC Press
Total Pages: 260
Release: 2010-07-28
Genre: Technology & Engineering
ISBN: 0203841417

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This volume contains 28 papers by renowned international experts on the latest advances in structural reliability methods and applications, engineering risk analysis and decision making, new optimization techniques and various applications in civil engineering. Moreover, several contributions focus on the assessment and optimization of existing str


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
Publisher:
Total Pages: 0
Release: 2014-02-10
Genre: Technology & Engineering
ISBN: 9781138000865

Download Safety, Reliability, Risk and Life-cycle Performance of Structures and Infrastructures Book in PDF, ePub and Kindle

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 structures and infrastructures, with special focus on advanced technologies, analytical and computational methods of risk analysis, probability-based design and regulations, smart systems and materials, life-cycle cost analysis, damage assessment, social aspects, urban planning, and industrial applications. Emerging concepts as well as state-of-the-art and novel applications of reliability principles in all types of structural systems and mechanical components are included. Civil, marine, mechanical, transportation, nuclear and aerospace applications are discussed. The unique knowledge, ideas and insights make this set of a book of abstracts and searchable, full paper USBdevice must-have literature for researchers and practitioners involved with safety, reliability, risk and life-cycle performance of structures and infrastructures.


Advances in Reliability and Optimization of Structural Systems

Advances in Reliability and Optimization of Structural Systems
Author: Dan M. Frangopol
Publisher: CRC Press
Total Pages: 320
Release: 2005-12-22
Genre: Technology & Engineering
ISBN: 9780415399012

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This volume contains thirty-one papers presented at the Twelfth Scientific Meeting of the IFIP Working Group on Reliability and Optimization of Structural Systems which took place in Aalborg, Denmark, from May 22-25, 2005. The Working Group Conference was organized by the IFIP (International Federation for Information Processing) Working Group 7.5 of the Technical Committee on Modelling and Optimization. The purpose of the Working Group is to promote modern structural system reliability and optimization theory and its applications, to stimulate research, development and application of structural system reliability and optimization theory, to assist and advance research and development in these fields, to further the dissemination and exchange of information on reliability and optimization of structural systems, and to encourage education in structural system reliability and optimization theory.


Reliability and Risk of Structural Systems Under Progressive and Sudden Damage

Reliability and Risk of Structural Systems Under Progressive and Sudden Damage
Author: Duygu Saydam
Publisher:
Total Pages: 366
Release: 2013
Genre:
ISBN: 9781303479236

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Structural systems are usually subjected to progressive and/or sudden damage throughout their lifetime. Damage can cause a reduced level of safety and increase the life-cycle cost. In order to keep the safety and proper functionality of structures above prescribed thresholds, maintenance interventions should be well planned. Informed decision making for maintaining the required safety and serviceability levels of structural systems under uncertainty during their lifetime can only be achieved through integrated life-cycle management planning. Structural performance assessment and prediction, optimization of inspection and monitoring activities, updating the performance with information from inspection and monitoring, optimization of maintenance and repair activities and decision making are the main tasks of an integrated life-cycle management framework. Accurate prediction and quantification of life-cycle performance is the most critical task in a life-cycle management framework. Uncertainty is inevitable in all aspects of this framework. Aggressive environmental conditions may cause the strength of a structure to deteriorate progressively in time. The deterioration process is complex and contains high uncertainty. Therefore, probabilistic methods are required for accurate assessment of structural performance. Reliability-based performance measures are the primary tool for structural management optimization frameworks. Extreme events such as floods, earthquakes, and blasts may cause sudden damage to structures. A structure must be able to withstand local damage without experiencing disproportionate consequences. Performance measures such as reliability, redundancy, robustness, vulnerability and damage tolerance should be considered in the life-cycle management of structures. Risk-based approaches provide the means of combining the probability of structural failure with the consequences of this event. There is the need to effectively incorporate the risk-based performance measures into the life-cycle management frameworks by accounting for the probabilities of occurrence of failure events and the associated consequences using scenario-based approaches in a computationally efficient manner. The main objective of this study is to develop means for integrating the reliability-based and risk-based performance indicators in a life-cycle management framework for structures undergoing progressive and sudden damage. An approach for quantifying time-variant reliability, redundancy, vulnerability, and robustness of structural systems in a life-cycle context is developed. A methodology for quantifying lifetime risk associated with the component failure and risk-based robustness of bridge superstructures is proposed. Furthermore, a risk-based maintenance optimization methodology for deteriorating bridges to establish optimum maintenance plans is proposed. A methodology to assess the time-dependent expected losses and risk-based robustness of highway bridge networks consisting of deteriorating bridges is established. In addition, a probabilistic approach for performance assessment of ship hulls under sudden damage accounting for different operational conditions is developed. Finally, the applicable range of simple expressions based on first-order second-moment method for bridge system reliability assessment is provided by investigating the amount of error associated with these simple expressions.


Structures and Infrastructure Systems

Structures and Infrastructure Systems
Author: Dan M. Frangopol
Publisher: Routledge
Total Pages: 830
Release: 2019-12-18
Genre: Technology & Engineering
ISBN: 1351182781

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Our knowledge to model, design, analyse, maintain, manage and predict the life-cycle performance of infrastructure systems is continually growing. However, the complexity of these systems continues to increase and an integrated approach is necessary to understand the effect of technological, environmental, economic, social, and political interactions on the life-cycle performance of engineering infrastructure. In order to accomplish this, methods have to be developed to systematically analyse structure and infrastructure systems, and models have to be formulated for evaluating and comparing the risks and benefits associated with various alternatives. Civil engineers must maximize the life-cycle benefits of these systems to serve the needs of our society by selecting the best balance of the safety, economy, resilience and sustainability requirements despite imperfect information and knowledge. Within the context of this book, the necessary concepts are introduced and illustrated with applications to civil and marine structures. This book is intended for an audience of researchers and practitioners world‐wide with a background in civil and marine engineering, as well as people working in infrastructure maintenance, management, cost and optimization analysis. The chapters originally published as articles in Structure and Infrastructure Engineering.


Reliability and Optimization of Structural Systems

Reliability and Optimization of Structural Systems
Author: D.M. Frangopol
Publisher: Pergamon
Total Pages: 392
Release: 1997-02-27
Genre: Science
ISBN:

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This book contains 38 papers presented at the seventh Working Conference on 'Reliability and Optimization of Structural Systems' held at Boulder, Colorado, USA, on April 2-4, 1996. The Working Conference was organized by the IFIP (International Federation for Information Processing) Working Group 7.5 of Technical Committee 7 and was the seventh in a series of similar conferences. The objectives of the Working Group and hence this publication are: . to promote modern structural systems optimization and reliability theory, . to advance international co-operation in the field of structural system optimization and reliability theory, . to stimulate research, development and application of structural system optimization and reliability theory, . to further dissemination and exchange of information on reliability and optimization of structural systems, and . to encourage education in structural system organization and reliability theory.