4.5 Article

Analysis of Fiber-Optic Strain-Monitoring Data from a Prestressed Concrete Bridge

Journal

JOURNAL OF BRIDGE ENGINEERING
Volume 22, Issue 5, Pages -

Publisher

ASCE-AMER SOC CIVIL ENGINEERS
DOI: 10.1061/(ASCE)BE.1943-5592.0000996

Keywords

Brillouin optical time domain reflectometry (BOTDR); Concrete creep; Concrete shrinkage; Prestressed concrete; Structural health monitoring; Strain measurement

Funding

  1. EPSRC [EP/D076870/1]
  2. Smart Infrastructure: Wireless Sensor Network System for Condition Assessment and Monitoring of Infrastructure [EP/I019308/1]
  3. Innovation Knowledge Centre for Smart Infrastructure and Construction
  4. Innovation and Knowledge Centre for Smart Infrastructure and Construction - Collaborative Programme Tranche 1 [EP/K000314/1]
  5. Engineering and Physical Sciences Research Council [EP/I019308/1, EP/D076870/1, EP/L010917/1, EP/K000314/1, EP/N021614/1] Funding Source: researchfish
  6. EPSRC [EP/I019308/1, EP/D076870/1, EP/K000314/1, EP/L010917/1, EP/N021614/1] Funding Source: UKRI

Ask authors/readers for more resources

This paper presents data from fiber-optic strain monitoring of the Nine Wells Bridge, which is a three-span, pretensioned, prestressed concrete beam-and-slab bridge located in Cambridgeshire in the United Kingdom. The original deployment at the site and the challenges associated with collecting distributed strain data using the Brillouin optical time domain reflectometry (BOTDR) technique are described. In particular, construction and deployment issues of fiber robustness and temperature effects are highlighted. The challenges of interpreting the collected data as well as the potential value of information that may be obtained are discussed. Challenges involved with relating measurements to the expected levels of prestress, including the effects due to debonding, creep, and shrinkage, are discussed and analyzed. This paper provides an opportunity to study whether two commonly used models for creep and shrinkage, adequately model data collected in field conditions.

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