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System Reliability, Risk, Longevity, Sustainability and Optimal Decision-Making/Надежность системы, риск, долговечность, устойчивость и оптимальное принятие решений

Артикул: 00-01106348
в желания В наличии
Автор: Dan M. Frangopol,Sunyong Kim
Издательство: CRC Press (все книги издательства)
ISBN: 978-1-032-89432-4
Год: 2025
Переплет: Мягкая обложка
Страниц: 326
Вес: 817 г
1390 P
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Издание на английском языке
The book focuses on assessing and predicting the structural performance of offshore structures, taking into account their vulnerability to various environmental and operational factors. It offers a comprehensive approach to analyzing the reliability and durability of infrastructure, including methods for monitoring health and optimizing maintenance strategies. Economic aspects such as cost-benefit analysis, as well as multi-criteria optimization are considered, which allows for more informed decisions in the management of marine and civil structures. The book is a valuable resource for engineers, researchers, and policy makers seeking to improve the resilience and reliability of infrastructure in challenging environments.

Contents
Preface
1. General Concepts of Reliability, Redundancy, Risk, Longevity, Sustainability and Decision-making
Notations
1.1 Introduction
1.2 Load and Resistance of Marine Structures
1.3 Reliability
1.4 Redundancy
1.5 Risk
1.6 Longevity
1.7 Sustainability
1.8 Decision-making Under Uncertainty
1.9 Conclusions
2. Reliability Assessment and Prediction
Notations
2.1 Introduction
2.2 Formulation of State Function
2.3 Reliability of Structural Systems
2.4 Time-dependent Reliability
2.5 Applications
2.6 Conclusions
3. Redundancy Assessment and Prediction
Notations
3.1 Introduction
3.2 Redundancy Assessment
3.3 Time-variant Probabilistic Redundancy
3.4 Applications
3.5 Conclusions
4. Risk Assessment and Prediction
Notations
4.1 Introduction
4.2 Risk Assessment
4.3 Time-dependent Risk
4.4 Applications
4.5 Conclusions
5. Structural Longevity
Notations
5.1 Introduction
5.2 General Concept of Structural Longevity
5.3 Structural Longevity in Life-cycle Management
5.4 Role of Adaptive Risk-based Inspection Planning and Digital Twin
5.5 Applications
5.6 Conclusions
6. Sustainability
Notations
6.1 Introduction
6.2 General Concept of Sustainability
6.3 Sustainability Assessment
6.4 Time-dependent Sustainability
6.5 Applications
6.6 Conclusions
7. Integration of Structural Health Monitoring in Service Life Management Under Uncertainty
Notations
7.1 Introduction
7.2 Structural Health Monitoring in Life-cycle Analysis
7.3 Performance Assessment and Prediction Using Monitoring Data
7.4 Performance Updating with Monitoring Data
7.5 Applications
7.6 Conclusions
8. Single-objective Optimization of Inspection, Monitoring and Maintenance Planning for Service Life Management
Notations
8.1 Introduction
8.2 Damage Detection by Inspection and Monitoring
8.3 Maintenance Delay
8.4 General Concepts of Optimum Inspection, Monitoring and Maintenance Planning
8.5 Single-objective Optimum Inspection and Maintenance Planning
8.6 Single-objective Optimum Monitoring and Maintenance Planning
8.7 Brief Introduction to Multi-objective Optimization for Service Life Management
8.8 Conclusions
9. Cost-benefit, Utility and Information Analysis for Deteriorating Structures
Notations
9.1 Introduction
9.2 General Concepts of Cost-benefit Analysis
9.3 Utility Analysis Based on Cost-benefit
9.4 Information Utility
9.5 Applications
9.6 Conclusions
10. Multi-objective Optimization and Optimal Decision-making
Notations
10.1 Introduction
10.2 Multi-objective Optimization
10.3 Optimal Decision-making
10.4 Applications of Multi-objective Optimization
10.5 Applications of Optimal Decision-making
10.6 Conclusions
11. Conclusions
11.1 Summary
11.2 Conclusions
11.3 Future Directions
References
Index

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