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Erschienen in: Meccanica 9/2019

17.07.2019 | Stochastics and Probability in Engineering Mechanics

Parameters identification of cable stayed footbridges using Bayesian inference

verfasst von: Chiara Pepi, Massimiliano Gioffre’, Mircea D. Grigoriu

Erschienen in: Meccanica | Ausgabe 9/2019

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Abstract

Numerical modeling of actual structural systems is a very complex task mainly due to the lack of complete knowledge on the involved parameters. Simplified assumptions on the uncertain geometry, material properties and boundary conditions make the numerical model response differ from the actual structural response. Improvements of the finite element (FE) models to obtain accurate response predictions can be achieved by vibration based FE model updating which uses experimental measures to minimize the differences between the numerical and experimental modal features (i.e. natural frequencies and mode shapes). Within this context, probabilistic model updating procedures based on the Bayes’ theorem were recently proposed in the literature in order to take into account the uncertainties affecting the structural parameters and their influence on the structural response. In this paper, a novel framework to efficiently estimate the posterior marginal PDF of the selected model parameters is proposed. First, the main dynamic parameters to be used for model updating are identified by ambient vibration tests on an actual structural system. Second, a first numerical FE model is developed to perform initial sensitivity analysis. Third, a surrogate model based on polynomial chaos is calibrated on the initial FE model to significantly reduce computational costs. Finally, the posterior marginal PDFs of the chosen model parameters are estimated. The effectiveness of the proposed method is demonstrated using a FE numerical model describing a curved cable-stayed footbridge located in Terni (Umbria Region, Central Italy).

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Literatur
1.
Zurück zum Zitat Allemang AJ (2003) The modal assurance criterion (MAC): twenty years of use and abuse. J Sound Vib 37:14–21 Allemang AJ (2003) The modal assurance criterion (MAC): twenty years of use and abuse. J Sound Vib 37:14–21
6.
Zurück zum Zitat Beck JL, Katafygiotis LS (1998) Updating models and their uncertainties. I: Bayesian statistical framework. J Eng Mech 124(4):455–461 10.1061/(ASCE)0733-9399(1998)124:4(455)CrossRef Beck JL, Katafygiotis LS (1998) Updating models and their uncertainties. I: Bayesian statistical framework. J Eng Mech 124(4):455–461 10.1061/(ASCE)0733-9399(1998)124:4(455)CrossRef
10.
Zurück zum Zitat Brincker R, Ventura C, Andersen P (2001) Damping estimation by frequency domain decomposition Brincker R, Ventura C, Andersen P (2001) Damping estimation by frequency domain decomposition
11.
Zurück zum Zitat Brincker R, Ventura CE (2015) Introduction to operational modal analysis. Wiley, HobokenCrossRefMATH Brincker R, Ventura CE (2015) Introduction to operational modal analysis. Wiley, HobokenCrossRefMATH
12.
Zurück zum Zitat Brincker R, Zhang L, Andersen P (2000) Modal identification from ambient responses using frequency domain decomposition. In: Proceedings of the international modal analysis conference—IMAC 1 Brincker R, Zhang L, Andersen P (2000) Modal identification from ambient responses using frequency domain decomposition. In: Proceedings of the international modal analysis conference—IMAC 1
16.
Zurück zum Zitat Ewins D (1984) Modal testing: theory and practice. Mechanical engineering research studies: engineering dynamics series. Research Studies Press, Letchworth Ewins D (1984) Modal testing: theory and practice. Mechanical engineering research studies: engineering dynamics series. Research Studies Press, Letchworth
19.
Zurück zum Zitat Gamerman D, Lopes H (2015) Markov Chain Monte Carlo: stochastic simulation for Bayesian inference. Chapmann & Hall, CRC, Boca RatonMATH Gamerman D, Lopes H (2015) Markov Chain Monte Carlo: stochastic simulation for Bayesian inference. Chapmann & Hall, CRC, Boca RatonMATH
21.
Zurück zum Zitat Ghanem R, Spanos P (1991) Stochastic finite elements: a spectral approach. Am J Math 60:897–936MATH Ghanem R, Spanos P (1991) Stochastic finite elements: a spectral approach. Am J Math 60:897–936MATH
24.
Zurück zum Zitat Hastings W (1970) Monte Carlo sampling methods using Markov chains and their applications. Biometrika trust, vol 57. Oxford University Press, OxfordMATH Hastings W (1970) Monte Carlo sampling methods using Markov chains and their applications. Biometrika trust, vol 57. Oxford University Press, OxfordMATH
27.
Zurück zum Zitat Marwala T (2010) Finite-element-model updating using computional intelligence techniques. Springer, LondonCrossRefMATH Marwala T (2010) Finite-element-model updating using computional intelligence techniques. Springer, LondonCrossRefMATH
30.
Zurück zum Zitat Neal RM (2011) MCMC using Hamiltonian dynamics. Handbook of Markov Chain Monte Carlo Neal RM (2011) MCMC using Hamiltonian dynamics. Handbook of Markov Chain Monte Carlo
31.
Zurück zum Zitat Peeters B, De Roeck G (1999) Reference-based stochastic subspace identification for output-only modal analysis. Mech Syst Signal Process 13:855–878ADSCrossRef Peeters B, De Roeck G (1999) Reference-based stochastic subspace identification for output-only modal analysis. Mech Syst Signal Process 13:855–878ADSCrossRef
34.
Zurück zum Zitat Sap2000 (2018) Static and dynamic finite element of structures. Computers and Structures Inc, Berkeley Sap2000 (2018) Static and dynamic finite element of structures. Computers and Structures Inc, Berkeley
35.
Zurück zum Zitat Saltelli A, Chan K (2000) Sensitivity analysis. Wiley, New YorkMATH Saltelli A, Chan K (2000) Sensitivity analysis. Wiley, New YorkMATH
36.
Zurück zum Zitat Simoen E, De Roeck G, Lombaert G (2011) Resolution and uncertainty analysis of Bayesian FE model updating results. In: Proceedings of the 8th international conference on structural dynamics, EURODYN 2011, pp 2318–2325 Simoen E, De Roeck G, Lombaert G (2011) Resolution and uncertainty analysis of Bayesian FE model updating results. In: Proceedings of the 8th international conference on structural dynamics, EURODYN 2011, pp 2318–2325
38.
Zurück zum Zitat Sobol I (1993) Sensitivity estimates for non linear mathematical model. Math Comput Simul 1:56–61 Sobol I (1993) Sensitivity estimates for non linear mathematical model. Math Comput Simul 1:56–61
41.
Zurück zum Zitat Sudret B, Marelli S, Wiart J (2017) Surrogate models for uncertainty quantification: an overview. In: 2017 11th European conference on antennas and propagation (EUCAP), pp 793–797 Sudret B, Marelli S, Wiart J (2017) Surrogate models for uncertainty quantification: an overview. In: 2017 11th European conference on antennas and propagation (EUCAP), pp 793–797
45.
Zurück zum Zitat Xiu D, Karniadakis GE (2002) The Wiener–Askey polynomial chaos for stochastic differential equations. SIAM J Sci Comput 24(2):619–644MathSciNetCrossRefMATH Xiu D, Karniadakis GE (2002) The Wiener–Askey polynomial chaos for stochastic differential equations. SIAM J Sci Comput 24(2):619–644MathSciNetCrossRefMATH
Metadaten
Titel
Parameters identification of cable stayed footbridges using Bayesian inference
verfasst von
Chiara Pepi
Massimiliano Gioffre’
Mircea D. Grigoriu
Publikationsdatum
17.07.2019
Verlag
Springer Netherlands
Erschienen in
Meccanica / Ausgabe 9/2019
Print ISSN: 0025-6455
Elektronische ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-019-01019-x

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