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2019 | OriginalPaper | Buchkapitel

22. Experimental Characterisation of Dynamic Properties of an All-FRP Truss Bridge

verfasst von : Xiaojun Wei, Giosue Boscato, Justin Russell, Alessandro Adilardi, Salvatore Russo, Stana Živanović

Erschienen in: Dynamics of Civil Structures, Volume 2

Verlag: Springer International Publishing

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Abstract

Fibre Reinforced Polymers (FRPs) have increasingly been utilised for construction of pedestrian bridges due to high strength- and stiffness-to-weight ratios, low maintenance costs and quick installation. Their relatively low mass and stiffness make these bridges potentially susceptible to vibration serviceability problems, which increasingly govern the design. Currently, the wider application of FRPs in civil engineering is hindered by the lack of experimental insight in dynamic performance of as-built structures. This paper presents an experimental investigation on a 25 m long glass-FRP truss footbridge in Italy. Ambient vibration tests were conducted to identify the dynamic properties. The peak-picking method and stochastic subspace identification approach were employed for modal parameter identification. The two methods produced very consistent results. Eight vibration modes were identified in the frequency range up to 10 Hz. Two lateral flexural vibration modes having natural frequencies of 5.8 and 9.6 Hz were identified, as well as two vertical flexural modes (at 7.5 and 8.1 Hz) and four torsional modes (at 2.1, 2.7, 4.8 and 9.3 Hz). Damping ratios for all modes up to 10 Hz except the eighth mode were above 1.2%.

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Literatur
1.
Zurück zum Zitat Ye, L.P., Feng, P., Zhang, K., Lin, L., Hong, W.H, Yue, Q.R: FRP in civil engineering in China: research and applications. In: Proceedings of Fiber Reinforced Polymer: Reinforcement for Concrete Structures Singapore, pp. 1401–1412 (2003) Ye, L.P., Feng, P., Zhang, K., Lin, L., Hong, W.H, Yue, Q.R: FRP in civil engineering in China: research and applications. In: Proceedings of Fiber Reinforced Polymer: Reinforcement for Concrete Structures Singapore, pp. 1401–1412 (2003)
2.
Zurück zum Zitat Wan, B.: Using fiber-reinforced polymer (FRP) composites in bridge construction and monitoring their performance: an overview. In: Advanced Composites in Bridge Construction and Repair, Woodhead Publishing, The United Kingdom, pp. 3–28 (2014)CrossRef Wan, B.: Using fiber-reinforced polymer (FRP) composites in bridge construction and monitoring their performance: an overview. In: Advanced Composites in Bridge Construction and Repair, Woodhead Publishing, The United Kingdom, pp. 3–28 (2014)CrossRef
3.
Zurück zum Zitat Russell, J., Wei, X., Živanović, S., Kruger, C.: Dynamic response of an FRP footbridge due to pedestrians and train buffeting. Procedia Eng. 199, 3059–3064 (2017)CrossRef Russell, J., Wei, X., Živanović, S., Kruger, C.: Dynamic response of an FRP footbridge due to pedestrians and train buffeting. Procedia Eng. 199, 3059–3064 (2017)CrossRef
4.
Zurück zum Zitat Wei, X., Russell, J., Živanović, S., Mottram, J.T.: Experimental investigation of the dynamic characteristics of a glass-FRP suspension footbridge. In: Caicedo J, Pakzad S. (eds.) Dynamics of Civil Structures, Proceedings of the 35th IMAC, A Conference and Exposition on Structural Dynamics 2017, vol. 2, pp. 37–47. Springer, Cham (2017) Wei, X., Russell, J., Živanović, S., Mottram, J.T.: Experimental investigation of the dynamic characteristics of a glass-FRP suspension footbridge. In: Caicedo J, Pakzad S. (eds.) Dynamics of Civil Structures, Proceedings of the 35th IMAC, A Conference and Exposition on Structural Dynamics 2017, vol. 2, pp. 37–47. Springer, Cham (2017)
5.
Zurück zum Zitat Burgoyne, C., Head, P.: Aberfeldy Bridge–an advanced textile reinforced footbridge. Techtextil Syposium, pp. 1–9 (1993) Burgoyne, C., Head, P.: Aberfeldy Bridge–an advanced textile reinforced footbridge. Techtextil Syposium, pp. 1–9 (1993)
6.
Zurück zum Zitat Adilardi, A., Frasconi, L: Design of a pedestrian bridge made with pultruded profiles of fibreglass-reinforced plastics in Prato. In: Footbridge 2008 – Footbridges for Urban Renewal, Porto, pp. 345–346 (2008) Adilardi, A., Frasconi, L: Design of a pedestrian bridge made with pultruded profiles of fibreglass-reinforced plastics in Prato. In: Footbridge 2008 – Footbridges for Urban Renewal, Porto, pp. 345–346 (2008)
7.
Zurück zum Zitat Felber, A.J.: Development of a hybrid bridge evaluation system. PhD Thesis, The University of British Columbia (1994) Felber, A.J.: Development of a hybrid bridge evaluation system. PhD Thesis, The University of British Columbia (1994)
8.
Zurück zum Zitat Ren, W.-X., Peng, X.-L., Lin, Y.-Q.: Experimental and analytical studies on dynamic characteristics of a large span cable-stayed bridge. Eng. Struct. 27, 535–548 (2005)CrossRef Ren, W.-X., Peng, X.-L., Lin, Y.-Q.: Experimental and analytical studies on dynamic characteristics of a large span cable-stayed bridge. Eng. Struct. 27, 535–548 (2005)CrossRef
9.
Zurück zum Zitat Reynders, E., Schevenels, M., Roeck, G.D.: MACEC 3.2: a matlab toolbox for experimental and operational modal analysis. Department of Civil Engineering, KU Leuven (2014) Reynders, E., Schevenels, M., Roeck, G.D.: MACEC 3.2: a matlab toolbox for experimental and operational modal analysis. Department of Civil Engineering, KU Leuven (2014)
10.
Zurück zum Zitat Peeters, B., De Roeck, G.: Reference-based stochastic subspace identification for output-only modal analysis. Mech. Syst. Signal Process. 13, 855–878 (1999)CrossRef Peeters, B., De Roeck, G.: Reference-based stochastic subspace identification for output-only modal analysis. Mech. Syst. Signal Process. 13, 855–878 (1999)CrossRef
11.
Zurück zum Zitat Peeters, B., De Roeck, G.: Stochastic system identification for operational modal analysis: a review. J. Dyn. Syst. Meas. Control. 123, 659–667 (2001)CrossRef Peeters, B., De Roeck, G.: Stochastic system identification for operational modal analysis: a review. J. Dyn. Syst. Meas. Control. 123, 659–667 (2001)CrossRef
12.
Zurück zum Zitat Reynders, E., Roeck, G.D.: Reference-based combined deterministic–stochastic subspace identification for experimental and operational modal analysis. Mech. Syst. Signal Process. 22, 617–637 (2008)CrossRef Reynders, E., Roeck, G.D.: Reference-based combined deterministic–stochastic subspace identification for experimental and operational modal analysis. Mech. Syst. Signal Process. 22, 617–637 (2008)CrossRef
13.
Zurück zum Zitat Tilly, G.P., Cullington, D.W., Eyre, R.: Dynamic behaviour of footbridges. IABSE Surveys S-26/84, IABSE Periodica, pp. 13–24 (1984) Tilly, G.P., Cullington, D.W., Eyre, R.: Dynamic behaviour of footbridges. IABSE Surveys S-26/84, IABSE Periodica, pp. 13–24 (1984)
14.
Zurück zum Zitat Bachmann, H., Pretlove, A.J., Rainer, J.H.: Vibrations induced by people. In: Bachmann, H., Ammann, W.J., Deischl, F., Eisenmann, J., Floegl, I., Hirsch, G.H., et al. (eds.) Vibration Problems in Structures: Practical Guidelines, pp. 1–28. Birkhäuser Basel, Basel (1995)CrossRef Bachmann, H., Pretlove, A.J., Rainer, J.H.: Vibrations induced by people. In: Bachmann, H., Ammann, W.J., Deischl, F., Eisenmann, J., Floegl, I., Hirsch, G.H., et al. (eds.) Vibration Problems in Structures: Practical Guidelines, pp. 1–28. Birkhäuser Basel, Basel (1995)CrossRef
Metadaten
Titel
Experimental Characterisation of Dynamic Properties of an All-FRP Truss Bridge
verfasst von
Xiaojun Wei
Giosue Boscato
Justin Russell
Alessandro Adilardi
Salvatore Russo
Stana Živanović
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-74421-6_22

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