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Article type: Research Article
Authors: Nunziante, L. | Fraldi, M. | Carannante, F. | Mahmoud, K.M.
Affiliations: Department of Structural Engineering, University of Napoli “Federico II”, Napoli, Italy | Bridge Technology Consulting, New York, NY, USA
Note: [] Corresponding author: Tel.: +39 338 8211 918; Fax: +39 081 575 6147; E-mail: nunsci@unina.it
Abstract: Recently, the use of Optical Fibre Sensors (OFS) utilising Brillouin scattering effect for reading distributed measurements of temperature and strains has been addressed. Several authors have stressed the actual theoretical and practical difficulties connected to this new kind of measurement such as mechanical characterization of optical fibres, decaying of strains in the protective coatings, spatial resolution of the Brillouin scattering, brittleness of the glass core, elastic-plastic response of the coatings, end effects, different effects of strain readings in dilatation or in contraction. Moreover for strain readings, a few of technical devices have been proposed to connect the optical fibre sensor to the structure, in order to obtain better results in terms of accuracy of measurements. Recently, several authors have shown that, by means of distributed experimental strain readings, it is easy the safety monitoring and assessment of large structures as bridges, pipes, high rise buildings, dams and tunnels. Then, in spite of the above mentioned uncertainties, the greatest utility of this new sensors are demonstrated by the authors for detection of defects rising in large structures, and accuracy and reliability of measurements are discussed. A paper recently appeared, by some of Authors, have provided for the mechanical response of optical fibre, when it is embedded in a bearing support beam-like element, where OFSs are treated in the framework of elastic Functionally Graded Material Cylinders (FGMCs), under symmetrical load conditions. The achieved theoretical results characterize the complete set of the so-called no-decaying solutions, which present axial strain in the system core-jacket not varying with the radius, and hence equal to the value assumed in the supporting element. Those analytical solutions are particularly efficient for strain readings utilising embedded sensors, because in this case the fibre core should exhibit an axial strain equal to the one on the structure to which the sensor is linked. Moreover, another set of so-called decaying solutions is obtained which was evaluated for the rate of decaying of the axial strain between the core and the support. In Part II of the current work laboratory tests will be shown, carried out on aluminium large rods in extension, equipped with embedded-type optic fibre sensors. Rods are commonly used in several structural systems, such as trusses, suspension, or cable-stayed bridges.
Keywords: Optical fibre sensor, distributed strain, rod structures, cable-stayed bridges, Brillouin scattering effect
DOI: 10.3233/BRS-2010-001
Journal: Bridge Structures, vol. 6, no. 1, 2, pp. 35-48, 2010
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