DocumentCode
2758
Title
Novel Sensor Design Using Photonic Crystal Fibres for Monitoring the Onset of Corrosion in Reinforced Concrete Structures
Author
McCague, Colum ; Fabian, Matthias ; Karimi, Maryam ; Bravo, Mikel ; Jaroszewicz, L.R. ; Mergo, Pawel ; Tong Sun ; Grattan, K.T.V.
Author_Institution
Opt. Sensors & Instrum. Group, City Univ. London, London, UK
Volume
32
Issue
5
fYear
2014
fDate
1-Mar-14
Firstpage
891
Lastpage
896
Abstract
In this paper, a novel sensing technique has been designed and investigated for the direct, in situ detection of steel corrosion distributed in reinforced concrete structures. At present, structural health monitoring in reinforced concrete structures is generally focused on monitoring the corrosion risk of the reinforcing steel. It is of significant importance, however, to inform industry of both the onset of corrosion and the corrosion rate as these are key contributors to structural degradation and thus evaluating the service life of the structures. This paper aims to address the above challenges by describing a novel corrosion sensor design using birefringent photonic crystal fibres. The technique exploits fully both the birefringence of the fibres for force/pressure measurement and their very low temperature sensitivity to detect the onset of corrosion. This new type of sensor not only determines the onset of corrosion but also allows for better monitoring along the length of a reinforcement bar.
Keywords
birefringence; corrosion; fibre optic sensors; force measurement; force sensors; holey fibres; optical design techniques; photonic crystals; pressure measurement; pressure sensors; reinforced concrete; stainless steel; birefringent photonic crystal fibres; corrosion sensor design; force measurement; pressure measurement; reinforced concrete structures; sensing technique; steel corrosion detection; structural degradation; structural health monitoring; Concrete; Corrosion; Monitoring; Optical sensors; Sensitivity; Steel; Fibre loop mirror (FLM); optical fibre sensors (OFSs); photonic crystal fibre (PCF); pressure sensor; structural health monitoring (SHM);
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2013.2293120
Filename
6676809
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