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2021 | OriginalPaper | Chapter

Distributed Optical Fibre Sensors for Strain and Temperature Monitoring of Early-Age Concrete: Laboratory and In-situ Examples

Authors : Rafał Sieńko, Łukasz Bednarski, Tomasz Howiacki

Published in: International RILEM Conference on Early-Age and Long-Term Cracking in RC Structures

Publisher: Springer International Publishing

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Abstract

Distributed fibre optic sensors (DFOS) provide new possibilities in structural technical condition assessment in comparison with traditional spot measurements. It is possible to analyze strains and temperature changes continuously over structural member length with spatial resolution starting from as fine as 5 mm. Thanks to the appropriate sensor construction and its installation before concreting it is possible to analyze material behaviour starting from its early stage, when thermal-shrinkage strains appear. This phenomenon depends on many factors, such as the type of concrete mix, dimensions of structural member, the way of concrete care, external conditions (temperature, humidity), formwork and constraints related to reinforcing bars or external friction and resulting with crack appearance. Stage of early-age concrete (hydration process) is thus very important for its final durability and performance. The article presents the very new measuring tools which allow for comprehensive analysis of concrete temperatures and strain state including all local nonlinearities (cracks). The attention was paid to hydration process, but sensors installed inside the structural members can be also effectively used during other phases such us: activation of prestressing tendons, construction stages or operation. Selected examples of laboratory tests as well as the unique in situ installations realized in Poland during last few years are presented and discussed hereafter. Except of traditional concrete, also other materials were examined, such as concrete made on lightweight sintered aggregate and fibre-reinforced concrete mixed with the ground.

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Literature
1.
go back to reference Barrias, A., Casas, J.R., Villalba, S.: A review of distributed optical fibre sensors for civil engineering applications. Sensors 16/2016 (2016) Barrias, A., Casas, J.R., Villalba, S.: A review of distributed optical fibre sensors for civil engineering applications. Sensors 16/2016 (2016)
2.
go back to reference Bersana, S., et al.: Distributed strain measurements in a CFA pile using high spatial resolution fibre optic sensors. Eng. Struct. 160(2018), 554–565 (2018)CrossRef Bersana, S., et al.: Distributed strain measurements in a CFA pile using high spatial resolution fibre optic sensors. Eng. Struct. 160(2018), 554–565 (2018)CrossRef
3.
go back to reference Composite-DFOS Sensors, Distributed fibre optic strain sensor EpsilonSensor, Data Sheet, SHM System, Krakow, Poland Composite-DFOS Sensors, Distributed fibre optic strain sensor EpsilonSensor, Data Sheet, SHM System, Krakow, Poland
4.
go back to reference Delepine-Lesoille, S., Merliot, E., Boulay, C.: Quasi-distributed optical fibre extensometers for continuous embedding into concrete: design and realization. Smart Mater. Struct. 15(2006), 931–938 (2006)CrossRef Delepine-Lesoille, S., Merliot, E., Boulay, C.: Quasi-distributed optical fibre extensometers for continuous embedding into concrete: design and realization. Smart Mater. Struct. 15(2006), 931–938 (2006)CrossRef
5.
go back to reference Luna Innovations. User Guide, Optical Backscatter Reflectometer 4600 (2013) Luna Innovations. User Guide, Optical Backscatter Reflectometer 4600 (2013)
6.
go back to reference Li, W., Bao, X.: High spatial resolution distributed fibre optic technique for strain and temperature measurements in concrete structures. In: International Workshop on Smart Materials & Structures, SHM and NDT for the Energy Industry, Calgary, Alberta, Canada (2013) Li, W., Bao, X.: High spatial resolution distributed fibre optic technique for strain and temperature measurements in concrete structures. In: International Workshop on Smart Materials & Structures, SHM and NDT for the Energy Industry, Calgary, Alberta, Canada (2013)
7.
go back to reference Mieszczak, M., Domagała, L.: Lightweight aggregate concrete as an alternative for dense concrete in post-tensioned concrete slab. Mater. Sci. Forum. 926, 140–145 (2018). ISSN: 1662-9752 Mieszczak, M., Domagała, L.: Lightweight aggregate concrete as an alternative for dense concrete in post-tensioned concrete slab. Mater. Sci. Forum. 926, 140–145 (2018). ISSN: 1662-9752
8.
go back to reference Minardo, A., et al.: Long term structural health monitoring by Brillouin fibre-optic sensing: a real case. Smart Mater. Struct. 9(2012), 64–69 (2012) Minardo, A., et al.: Long term structural health monitoring by Brillouin fibre-optic sensing: a real case. Smart Mater. Struct. 9(2012), 64–69 (2012)
9.
go back to reference Samiec, D.: Distributed fibre-optic temperature and strain measurement with extremely high spatial resolution. Photonik International (2012) Samiec, D.: Distributed fibre-optic temperature and strain measurement with extremely high spatial resolution. Photonik International (2012)
10.
go back to reference Seruga, A., Zych, M.: Thermal Cracking of the Cylindrical Tank under Construction. I: Case Study. Am. Soc. Civ. Eng. ASCE. J. Perform. Constr. Facil. 29(4), 04014100-1^04014100-9 (2015) Seruga, A., Zych, M.: Thermal Cracking of the Cylindrical Tank under Construction. I: Case Study. Am. Soc. Civ. Eng. ASCE. J. Perform. Constr. Facil. 29(4), 04014100-1^04014100-9 (2015)
11.
go back to reference Sieńko, R., et al.: Application of distributed optical fibre sensor technology for strain measurements in concrete structures. COST TU1402, Quantifying the Value of Structural Health Monitoring, Copenhagen, Denmark (2016) Sieńko, R., et al.: Application of distributed optical fibre sensor technology for strain measurements in concrete structures. COST TU1402, Quantifying the Value of Structural Health Monitoring, Copenhagen, Denmark (2016)
12.
go back to reference Sieńko, R., et al.: Application of distributed optical fibre sensor for strain and temperature monitoring within continuous flight auger columns. In: 4th World Multidisciplinary Earth Sciences Symposium WMESS, Prague, Czech Republic (2018) Sieńko, R., et al.: Application of distributed optical fibre sensor for strain and temperature monitoring within continuous flight auger columns. In: 4th World Multidisciplinary Earth Sciences Symposium WMESS, Prague, Czech Republic (2018)
14.
go back to reference Sieńko, R., Bednarski, Ł., Howiacki, T.: About distributed internal and surface strain measurements within prestressed concrete truck scale platforms. In: 3rd World Multidisciplinary Civil Engineering—Architecture—Urban Planning Symposium WMCAUS, Prague, Czech Republic (2018) Sieńko, R., Bednarski, Ł., Howiacki, T.: About distributed internal and surface strain measurements within prestressed concrete truck scale platforms. In: 3rd World Multidisciplinary Civil Engineering—Architecture—Urban Planning Symposium WMCAUS, Prague, Czech Republic (2018)
15.
go back to reference Szydłowski, R., Ślaga, Ł, Łabuzek, B.: 30 tons truck scale platform made from concrete prestressed with unbonded tendons. Przegląd Budowlany 6(2017), 33–39 (2017) Szydłowski, R., Ślaga, Ł, Łabuzek, B.: 30 tons truck scale platform made from concrete prestressed with unbonded tendons. Przegląd Budowlany 6(2017), 33–39 (2017)
16.
go back to reference Yang, D., et al.: Fatigue crack monitoring using plastic optical fibre sensor. Procedia Struct. Integr. 5(2017), 1168–1175 (2017)CrossRef Yang, D., et al.: Fatigue crack monitoring using plastic optical fibre sensor. Procedia Struct. Integr. 5(2017), 1168–1175 (2017)CrossRef
17.
go back to reference Zhou, Z., Wang, B., Ou, J.: Local damage detection of RC structures with distributive FRP-OFBG sensors. In: Second International Workshop on Structural Health Monitoring of Innovative Civil Engineering Structures, Winnipeg, Canada (2004) Zhou, Z., Wang, B., Ou, J.: Local damage detection of RC structures with distributive FRP-OFBG sensors. In: Second International Workshop on Structural Health Monitoring of Innovative Civil Engineering Structures, Winnipeg, Canada (2004)
18.
go back to reference Zych, M.: Research on thermal cracking of a rectangular RC tank wall under construction. II: comparison with numerical model. Am. Soc. Civ. Eng. ASCE. J. Perform. Constr. Facil. 30(1), 04014199-1^04014199-10 (2016) Zych, M.: Research on thermal cracking of a rectangular RC tank wall under construction. II: comparison with numerical model. Am. Soc. Civ. Eng. ASCE. J. Perform. Constr. Facil. 30(1), 04014199-1^04014199-10 (2016)
Metadata
Title
Distributed Optical Fibre Sensors for Strain and Temperature Monitoring of Early-Age Concrete: Laboratory and In-situ Examples
Authors
Rafał Sieńko
Łukasz Bednarski
Tomasz Howiacki
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-72921-9_7