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Sensing Issues in Civil Structural Health Monitoring

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Cover of 'Sensing Issues in Civil Structural Health Monitoring'

Table of Contents

  1. Altmetric Badge
    Book Overview
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    Chapter 1 Are Civil Structural Engineers “Risk Averse”? Can Civionics Help?
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    Chapter 2 Monitoring Technologies for Maintenance and Management of Urban Highways in Japan
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    Chapter 3 The Role of Sensing and Measurement in Achieving FHWA’S Strategic Vision for Highway Infrastructure
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    Chapter 4 Recent Development of Bridge Health Monitoring System in Korea
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    Chapter 5 A Strategy to Implement Structural Health Monitoring on Bridges
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    Chapter 6 Sensors — not Just for Research Anymore
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    Chapter 7 Investigation of the Dynamic Properties of the Brooklyn Bridge
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    Chapter 8 Distributed Sensing Technologies for Monitoring FRP-Strengthened Structures
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    Chapter 9 Monitoring and Response of CFRP Prestressed Concrete Bridge
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    Chapter 10 Monitoring and Response of CFRP Prestressed Concrete Bridge
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    Chapter 11 Design of Temporary and Permanent Arrays to Assess Dynamics Parameters in Historical and Monumental Buildings
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    Chapter 12 FRP-strengthened Structures: Monitoring Issues from Québec Applications
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    Chapter 13 Structural and Material Health Monitoring of Historical Objects
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    Chapter 14 Internal and External Sensing for Post-Earthquake Evaluation of Bridges
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    Chapter 15 Application of EM Stress Sensors in Large Steel Cables
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    Chapter 16 Enhancing Durability of Structures by Monitoring Strain and Cracking Behavior
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    Chapter 17 Development of an Earthquake Damage Detection System for Bridge Structures
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    Chapter 18 Determination of Rebar Forces Based on the Exterior Crack Opening Displacement Measurement of Reinforced Concrete
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    Chapter 19 Monitoring System Based on Optical Fiber Sensing Technology for Tunnel Structures and Other Infrastructure
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    Chapter 20 Development of FBG Sensors for Structural Health Monitoring in Civil Infrastructures
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    Chapter 21 Monitoring of a Smart Concrete Beam
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    Chapter 22 Fiber Optic Nerve Systems with Optical Correlation Domain Technique for Smart Structures and Smart Materials
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    Chapter 23 Use of Active Sensors for Health Monitoring of Transportation Infrastructure
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    Chapter 24 Health Monitoring of Concrete Structures Using Self-Diagnosis Materials
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    Chapter 25 Application of Image Analysis to Steel Structural Engineering
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    Chapter 26 Shape Memory Alloy-Based Smart Civil Structures with Self-Sensing and Repairing Capabilities
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    Chapter 27 Smart Sensors and Integrated Shm System for Offshore Structures
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    Chapter 28 Design Considerations for Sensing Systems to Ensure Data Quality
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    Chapter 29 Practical Implementations of Intelligent Health Monitoring Systems in Hit
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    Chapter 30 Health Monitoring, Damage Prognosis and Service-Life Prediction — Issues Related to Implementation
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    Chapter 31 Adaptive Event Detection for Shm System Monitoring
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    Chapter 32 A Note on Interpretation of Shm Data for Bridges
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    Chapter 33 Instrumentation Performance During Long-Term Bridge Monitoring
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    Chapter 34 Stability and Reliability of Fiberoptic Measurement Systems — Basic Conditions for Successful Long-Term Structural Health Monitoring
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    Chapter 35 Instrumentation of the Indoor Cable Stayed Bridge at Empa
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    Chapter 36 Structural Health Monitoring Systems for Bridge Decks and Rehabilitated Precast Prestress Concrete Beams
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    Chapter 37 CFRP Strengthening and Monitoring of a Box Girder Bridge
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    Chapter 38 Sensors and Condition Evaluation for Bridge Health Monitoring Using Operating Vehicle Loading
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    Chapter 39 Measuring Instruments for Optical Fiber Sensing
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    Chapter 40 Implementation of Long Gauge Fiber Optic Sensor Arrays in Civil Structures
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    Chapter 41 Absolute Deformation Measurement Using Fiber-Optic White Light Interferometer with Two Broad-Band Sources
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    Chapter 42 Interaction Model Between Fiber Optic Ultrasonic Sensor and Matrix Materials
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    Chapter 43 Birefringence and Transverse Strain Sensitivity in Bragg Grating Sensors
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    Chapter 44 A New Fiber-Optic Acoustic/Vibration Sensor — Characteristics and Application to Civil Structural Health Monitoring
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    Chapter 45 Embedded Crack Tip Opening Displacement Sensor for Concrete
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    Chapter 46 Loop Topology Based White Light Interferometric Fiber Optic Sensors Network
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    Chapter 47 Monitoring Results of A Self-Anchored Suspension Bridge
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    Chapter 48 Long-Term Monitoring of a Hybrid Cable-Stayed Bridge
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    Chapter 49 Structural Health Monitoring System Applications in Japan
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    Chapter 50 Long-Term Monitoring Operation of the Test-Road in Korea Highway Corporation(KHC)
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    Chapter 51 Pipeline Buckling Detection by the Distributed Brillouin Sensor
Overall attention for this book and its chapters
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Citations

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Readers on

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Title
Sensing Issues in Civil Structural Health Monitoring
Published by
Springer Netherlands, December 2005
DOI 10.1007/1-4020-3661-2
ISBNs
978-1-4020-3660-6, 978-1-4020-3661-3
Editors

Ansari, Farhad

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 85 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 1 1%
United States 1 1%
Unknown 83 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 27 32%
Student > Master 16 19%
Researcher 8 9%
Student > Doctoral Student 6 7%
Professor 4 5%
Other 11 13%
Unknown 13 15%
Readers by discipline Count As %
Engineering 61 72%
Materials Science 3 4%
Earth and Planetary Sciences 1 1%
Chemical Engineering 1 1%
Physics and Astronomy 1 1%
Other 1 1%
Unknown 17 20%