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A critical review of key developments and latest advances in Structural Health Monitoring technologies applied to civil engineering structures, covering all aspects required for practical application Structural Health Monitoring (SHM) provides the facilities for in-service monitoring of structural performance and damage assessment, and is a key element of condition based maintenance and damage prognosis. This comprehensive book brings readers up to date on the most important changes and advancements in the structural health monitoring technologies applied to civil engineering structures. It…mehr
A critical review of key developments and latest advances in Structural Health Monitoring technologies applied to civil engineering structures, covering all aspects required for practical application Structural Health Monitoring (SHM) provides the facilities for in-service monitoring of structural performance and damage assessment, and is a key element of condition based maintenance and damage prognosis. This comprehensive book brings readers up to date on the most important changes and advancements in the structural health monitoring technologies applied to civil engineering structures. It covers all aspects required for such monitoring in the field, including sensors and networks, data acquisition and processing, damage detection techniques and damage prognostics techniques. The book also includes a number of case studies showing how the techniques can be applied in the development of sustainable and resilient civil infrastructure systems. Structural Health Monitoring of Large Civil Engineering Structures offers in-depth chapter coverage of: Sensors and Sensing Technology for Structural Monitoring; Data Acquisition, Transmission, and Management; Structural Damage Identification Techniques; Modal Analysis of Civil Engineering Structures; Finite Element Model Updating; Vibration Based Damage Identification Methods; Model Based Damage Assessment Methods; Monitoring Based Reliability Analysis and Damage Prognosis; and Applications of SHM Strategies to Large Civil Structures. * Presents state-of-the-art SHM technologies allowing asset managers to evaluate structural performance and make rational decisions * Covers all aspects required for the practical application of SHM * Includes case studies that show how the techniques can be applied in practice Structural Health Monitoring of Large Civil Engineering Structures is an ideal book for practicing civil engineers, academics and postgraduate students studying civil and structural engineering.
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Autorenporträt
Hua-Peng Chen is Professor and Director of the Institute for Smart Transportation Infrastructure at East China Jiaotong University, China. He was formerly Professor of Civil Engineering and Head of Innovative and Smart Structures at the University of Greenwich, UK. He received his PhD in Structural Engineering from the University of Glasgow, UK. He has been working for over 20 years on structural health monitoring, advanced numerical modelling and structural performance assessment. He is a Chartered Civil Engineer (UK) and a Fellow of the Institution of Civil Engineers (UK).
Inhaltsangabe
Preface xiii
Biography xv
1 Introduction to Structural Health Monitoring 1
1.1 Advances in Structural Health Monitoring Technology 1
1.1.1 Structural Health in Civil Engineering 1
1.1.2 Aims of Structural Health Monitoring 2
1.1.3 Development of SHM Methods 3
1.2 Structural Health Monitoring System and Strategy 4
1.2.1 SHM System and its Components 4
1.2.2 SHM Strategy and Method 6
1.3 Potential Benefits of SHM in Civil Engineering 7
1.3.1 Character of SHM in Civil Engineering 7
1.3.2 Potential Benefits of SHM 9
1.4 Challenges and Further Work of SHM 10
1.4.1 Challenges of SHM in Civil Engineering 10
1.4.2 Further Work on SHM for Practical Applications 11
1.5 Concluding
Remarks 13
References 13
2 Sensors and Sensing Technology for Structural Monitoring 15
2.1 Introduction 15
2.2 Sensor Types 16
2.3 Sensor Measurements in Structural Monitoring 21
2.3.1 Structural Responses 21
2.3.2 Environmental Quantities 24
2.3.3 Operational Quantities 25
2.3.4 Typical Quantities for Bridge Monitoring 25
2.3.5 Example of an SHM System - a Suspension Bridge (I) 27
2.4 Fibre Optic Sensors 33
2.4.1 Classification of Fibre Optic Sensors 33
2.4.2 Typical Fibre Optic Sensors in SHM 33
2.4.3 Fibre Optic Sensors for Structural Monitoring 36
2.5 Wireless Sensors 37
2.5.1 Components of Wireless Sensors 38
2.5.2 Field Deployment in Civil Infrastructure 39
2.6 Optimum Sensor Selection and Placement 39
2.6.1 Factors for Sensor Selection 40
2.6.2 Optimal Sensor Placement 41
2.7 Case Study 42
2.7.1 Sensors and Sensing System for SHM 43
2.7.2 Installation of FBG Sensors 43
2.8 Concluding
Remarks 47
References 48
3 Data Acquisition, Transmission and Management 51
3.1 Introduction 51
3.2 Data Acquisition Systems 52
3.2.1 Data Acquisition for Structural Monitoring 52