
Life-Cycle of Structures Under Uncertainty
Description
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Concepts and approaches of life-cycle performance and cost analysis developed in recent decades are presented. The major topics covered include (a) probabilistic concepts of life-cycle performance and cost analysis, (b) inspection, monitoring and maintenance for fatigue cracks, (c) estimation of fatigue crack detection, (d) optimum inspection and monitoring planning, (e) multi-objective life-cycle optimization, and (f) decision making in life-cycle analysis. Life-cycle optimization covered in the book considers probability of fatigue crack detection, fatigue crack damage detection time, maintenance times, probability of failure, service life and total life-cycle cost. For the practical application and integration of recently developed approaches for inspection and maintenance planning, efficient and effective multi-objective optimization and decision making are presented.
This book will help engineers engaged in civil and marine structures including students, researchers and practitioners with reliable and cost-effective maintenance planning of fatigue-sensitive structures, and to develop more advanced approaches and techniques in the field of life-cycle maintenance optimization and safety of structures under various aging and deteriorating conditions.
Key Features:
Provides the state-of-the-art in life-cycle cost analysis and optimization for fatigue-sensitive structures
Provides a solid foundation of theoretical backgrounds and practical applications both for academics and practicing engineers and researchers
Covers illustrative examples and recent development for optimum service life management
Deals with various structures such as bridges and ships subjected to fatigue
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Persons
Dr. Sunyong Kim is an Assistant Professor at the Department of Civil and Environmental Engineering at Wonkwang University, South Korea. He obtained his undergraduate degree in 1999 at Yonsei University, South Korea, and his Master of Science Degree in 2004 at Korea Advanced Institute of Science and Technology (KAIST). Under the supervision of Professor Dan. M. Frangopol, he received a Ph.D in Structural Engineering in 2011 from Lehigh University, USA. His research interests include life-cycle performance management of civil infrastructure based on reliability and optimization, structural health monitoring and damage detection, and probabilistic safety and risk assessment of structures under natural hazards. Sunyong Kim is the recipient of the 2014 ASCE J. James R. Croes Medal, the 2014 IABMAS Junior Prize, and the 2018 IALCCE Junior Award. He has authored/co-authored several articles in peer-reviewed journals and conference proceedings.
Content
2. General Concept of Life-Cycle Analysis under Uncertainty.
3. Inspection, Monitoring and Maintenance.
4. Probabilistic Damage Detection.
5. Damage Detection-based Optimum Inspection and Monitoring Scheduling.
6. Optimum Service Life and Life-Cycle Cost Management.
7. Multi-Objective Probabilistic Life-Cycle Optimization.
8. Decision Making.
9. Conclusions.
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