Strain measurement in a concrete beam by use of the Brillouin-scattering-based distributed fiber sensor with single-mode fibers embedded in glass fiber reinforced polymer rods and bonded to steel reinforcing bars

The strain measurement of a 1.65-m reinforced concrete beam by use of a distributed fiber strain sensor with a 50-cm spatial resolution and 5-cm readout resolution is reported. The strain-measurement accuracy is +/-15 microepsilon (microm/m) according to the system calibration in the laboratory envi...

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Veröffentlicht in:Applied Optics 2002-08, Vol.41 (24), p.5105-5114
Hauptverfasser: Zeng, Xiaodong, Bao, Xiaoyi, Chhoa, Chia Yee, Bremner, Theodore W, Brown, Anthony W, DeMerchant, Michael D, Ferrier, Graham, Kalamkarov, Alexander L, Georgiades, Anastasis V
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Sprache:eng
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Zusammenfassung:The strain measurement of a 1.65-m reinforced concrete beam by use of a distributed fiber strain sensor with a 50-cm spatial resolution and 5-cm readout resolution is reported. The strain-measurement accuracy is +/-15 microepsilon (microm/m) according to the system calibration in the laboratory environment with non-uniform-distributed strain and +/-5 microepsilon with uniform strain distribution. The strain distribution has been measured for one-point and two-point loading patterns for optical fibers embedded in pultruded glass fiber reinforced polymer (GFRP) rods and those bonded to steel reinforcing bars. In the one-point loading case, the strain deviations are +/-7 and +/-15 microepsilon for fibers embedded in the GFRP rods and fibers bonded to steel reinforcing bars, respectively, whereas the strain deviation is +/-20 microepsilon for the two-point loading case.
ISSN:1559-128X
0003-6935
1539-4522
DOI:10.1364/AO.41.005105