Seismic fragilities of curved concrete bridges via bayesian parameter estimation method

  • Jeon, Jong-Su
  • Park, Taehyo
Citations

SCOPUS

1

초록

In this paper, a Bayesian parameter estimation method is applied for a regional seismic risk assessment of curved concrete bridges. For this purpose, a class of three-frame concrete box-girder bridges is chosen as a case-study bridge. Numerical bridge models accounting for geometric and material uncertainties are simulated in dynamic analyses to construct multi-parameter demand models of bridge components, including various uncertainty parameters and an intensity measure. The demand models are established introducing a Bayesian parameter estimation method. Logistic regression is used to develop parameterized fragility curves comparing demands and capacities. The developed fragilities can be used to generate their bridge-specific fragilities using a specific value of uncertainty parameters. Additionally, bridge-class fragility curves conditioned only on the intensity measure can be developed by integrating the parameterized fragility functions over the domain of the uncertainty parameters to assess the vulnerability of this bridge class. The bridge-class fragility model significantly reduces the model error in comparison to the traditional fragility model.

키워드

Bayesian parameter estimationBridge-specific and bridge-class fragility curvesCurved bridgesMulti-parameter demand modelsParameterized
제목
Seismic fragilities of curved concrete bridges via bayesian parameter estimation method
저자
Jeon, Jong-SuPark, Taehyo
DOI
10.11159/icsenm17.110
발행일
2017-04
유형
Conference Paper
저널명
World Congress on Civil, Structural, and Environmental Engineering
페이지
1 ~ 9

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