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Distributed Fiber Optic Shape Sensing of Concrete Structures
by
Lienhart, Werner
, Monsberger, Christoph M.
in
beam load testing
/ Cables
/ Civil engineering
/ civil structural health monitoring
/ Concrete
/ concrete structures
/ Construction
/ Design
/ distributed fiber optic sensors
/ Fiber optics
/ Infrastructure
/ Laboratories
/ Localization
/ Sensors
/ shape sensing
/ Temperature effects
/ tunnel lining segments
2021
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Distributed Fiber Optic Shape Sensing of Concrete Structures
by
Lienhart, Werner
, Monsberger, Christoph M.
in
beam load testing
/ Cables
/ Civil engineering
/ civil structural health monitoring
/ Concrete
/ concrete structures
/ Construction
/ Design
/ distributed fiber optic sensors
/ Fiber optics
/ Infrastructure
/ Laboratories
/ Localization
/ Sensors
/ shape sensing
/ Temperature effects
/ tunnel lining segments
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Distributed Fiber Optic Shape Sensing of Concrete Structures
by
Lienhart, Werner
, Monsberger, Christoph M.
in
beam load testing
/ Cables
/ Civil engineering
/ civil structural health monitoring
/ Concrete
/ concrete structures
/ Construction
/ Design
/ distributed fiber optic sensors
/ Fiber optics
/ Infrastructure
/ Laboratories
/ Localization
/ Sensors
/ shape sensing
/ Temperature effects
/ tunnel lining segments
2021
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Distributed Fiber Optic Shape Sensing of Concrete Structures
Journal Article
Distributed Fiber Optic Shape Sensing of Concrete Structures
2021
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Overview
Civil structural health monitoring (CSHM) has become significantly more important within the last decades due to rapidly growing construction volume worldwide as well as aging infrastructure and longer service lifetimes of the structures. The utilization of distributed fiber optic sensing (DFOS) allows the assessment of strain and temperature distributions continuously along the installed sensing fiber and is widely used for testing of concrete structures to detect and quantify local deficiencies like cracks. Relations to the curvature and bending behavior are however mostly excluded. This paper presents a comprehensive study of different approaches for distributed fiber optic shape sensing of concrete structures. Different DFOS sensors and installation techniques were tested within load tests of concrete beams as well as real-scale tunnel lining segments, where the installations were interrogated using fully-distributed sensing units as well as by fiber Bragg grating interrogators. The results point out significant deviations between the capabilities of the different sensing systems, but demonstrate that DFOS can enable highly reliable shape sensing of concrete structures, if the system is appropriately designed depending on the CSHM application.
Publisher
MDPI AG,MDPI
Subject
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