Sensor Technologies for Civil Infrastructures

Sensor Technologies for Civil Infrastructures

Volume 2: Applications in Structural Health Monitoring

Sohn, Hoon; Lynch, Jerome P.; Wang, Ming L.

Elsevier Science & Technology

07/2022

724

Mole

Inglês

9780081027066

15 a 20 dias

1120

Part One: Applications 1 Sensing solutions for assessing and monitoring of bridges 2 Sensing solutions for assessing and monitoring supertall structures 3 Seismic monitoring solutions for buildings 4 Sensing solutions for assessing and monitoring dams 5 Sensing solutions for assessing and monitoring tunnels 6 Mapping subsurface utilities with mobile electromagnetic geophysical sensor arrays 7 Sensing solutions for assessing the stability of levees, sinkholes, and landslides 8 Sensing solutions for assessing and monitoring pipeline systems 9 Sensing solutions for assessing and monitoring roads 10 Sensing solutions for assessing and monitoring high-speed railroads 11 Sensing solutions for assessing and monitoring underwater systems 12 Sensing solutions for assessing and monitoring offshore structures 13 Sensing solutions for assessing and monitoring wind turbines 14 Sensing solutions for assessing and monitoring of nuclear power plants

Part Two: Futuristic technology 15 Nonlinear acoustic/ultrasound methods for civil applications 16 Multifunctional materials and nanocomposite sensors for civil infrastructure monitoring 17 Long-term wireless structural monitoring of operational bridges 18 Robotic sensing for assessing and monitoring civil infrastructures 19 Structural health monitoring using unmanned aerial systems 20 Big data analysis for civil infrastructure sensing
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Accelerometers; Acoustic emission; Arch dam; ARX model; Asset management; Benchmark study; Big data; Blades; Bridge deck inspection; Bridge; Bridges; Carbon; Civil infrastructure sensing; Composite; Condition monitoring (CM)Offshore wind turbines (OWTs)Operational modal analysis; Construction; Current (traditional) sensing technologies; Damage detection; Damage diagnosis; Data-driven analysis; Deterioration; Displacements; Distributed optical fiber sensors; Distributed sensing; Drones; Electrical impedance tomography; Electromagnetic transducers; Emerging sensing technologies; Fatigue strength; Fiber optic sensors (FOSs)Hull stress monitoring system (HSMS)Long-based strain gages (LBSGs)Offshore structures; Geotechnical monitoring; Ground-penetrating radar; Induction; Instability localization; Landslide monitoring; Laser ultrasonic devices; Levee monitoring; Machine learning; Magnetostrictive sensors (MSSs)Nuclear power plants (NPPs)Optical fiber sensors; Mechanical reinforcement; Mechanoluminescence; Mobile wireless sensors; Monitoring; Multifunctional; Nanocomposite; Nanomaterial; Nondestructive evaluation (NDE) and testing; Nondestructive evaluation (NDE)Structural health monitoring (SHM)Underwater structures; Occupant monitoring; Piezoelectric transducers; Pressures; Railway turnout; Remote sensing; Retaining walls; Roadway inspection; Robotics; Rock; Seismic and typhoon-induced response; Sensor technology; Sensors; Sensory system; Ships; Sinkhole monitoring; Smart concrete; Smart infrastructure; Soft ground; Steel and concrete pipelines; Stochastic subspace identification (SSI)Subspace identification (SI)Wireless sensing system; Strain sensing; Strains; Structural health monitoring (SHM)Structural health monitoring (SHM)Supertall structure; Structural health monitoring (SHM)Support structures; Structural health monitoring of pipeline systems; Structural health monitoring; Structural monitoring; Structured light; System identification; Thin film; Tunneling; Typical damage and failure modes; Unmanned aerial systems (UASs)Unmanned aerial vehicles (UAVs)Vision-based structural monitoring; Utility mapping; Wireless sensors