Seismic fragility assessment of typical bridges in Northeastern Brazil

被引:3
作者
Ferreira Cavalcante, Gustavo Henrique [1 ]
Vieira Pereira, Eduardo Marques [1 ]
Rodrigues, Isabela Durci [2 ]
Marcos Vieira Junior, Luiz Carlos [1 ]
Padgett, Jamie Ellen [3 ]
Siqueira, Gustavo Henrique [1 ]
机构
[1] Univ Estadual Campinas Unicamp, Fac Engn Civil Arquitetura & Urbanismo, Dept Estruturas, Campinas, SP, Brazil
[2] Univ Sao Paulo, Dept Estruturas, Escola Engn Sao Carlos, Sao Carlos, SP, Brazil
[3] Rice Univ, Dept Civil & Environm Engn, Houston, TX USA
关键词
seismic demand; fragility functions; parametric analysis; earthquake engineering; vulnerability assessment; HIGHWAY BRIDGES; INTENSITY MEASURES; CURVES; METHODOLOGY; EARTHQUAKE; SCALAR;
D O I
10.1590/1679-78257062
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper presents a seismic fragility assessment of bridges commonly found in Northeastern Brazil. A generic three-dimensional nonlinear finite-element model is generated in OpenSees to enable variation of geometric features and component modeling. A parametric analysis is performed to evaluate the impact of the geometric and physical variations of the bridge inventory on the seismic behavior of the structures. Nonlinear time-history analyses using four sets of natural earthquake records are performed to obtain the Probabilistic Seismic Demand Model for the bridges. Capacity models are adopted according to previous studies to be combined with demand models to generate fragility functions. This article helps the decision markers to predict the seismic behavior of typical bridges in Northeastern Brazil, which enables the evaluation of risk mitigation methods.
引用
收藏
页数:18
相关论文
共 50 条
[41]   Response modification factor and seismic fragility assessment of skewed multi-span continuous concrete girder bridges [J].
Khorraminejad, Amir ;
Sedaghati, Parshan ;
Foliente, Greg .
EARTHQUAKES AND STRUCTURES, 2021, 20 (04) :389-403
[42]   ANN-based rapid seismic fragility analysis for multi-span concrete bridges [J].
Liu, Zhenliang ;
Sextos, Anastasios ;
Guo, Anxin ;
Zhao, Weigang .
STRUCTURES, 2022, 41 :804-817
[43]   Development of fragility curves for RC bridges subjected to reverse and strike-slip seismic sources [J].
Mosleh, Araliya ;
Razzaghi, Mehran S. ;
Jara, Jose ;
Varum, Humberto .
EARTHQUAKES AND STRUCTURES, 2016, 11 (03) :517-538
[44]   Seismic Fragility of Retrofitted Multispan Continuous Steel Bridges in New York [J].
Agrawal, A. K. ;
Ghosn, M. ;
Alampalli, S. ;
Pan, Y. .
JOURNAL OF BRIDGE ENGINEERING, 2012, 17 (04) :562-575
[45]   Seismic Fragility Analysis of V-Shaped Continuous Girder Bridges [J].
Ren, Leping ;
Zhang, Gang ;
Zhang, Yongfei ;
He, Shuanhai .
KSCE JOURNAL OF CIVIL ENGINEERING, 2020, 24 (03) :835-846
[46]   Seismic fragility assessment for a RC building in seismically stable Brazil: A sensitivity analysis [J].
Andrade, Rodrigo B. ;
Pereira, Eduardo M., V ;
Cavalcante, Gustavo H. F. ;
Vieira, Luiz C. M., Jr. ;
Siqueira, Gustavo H. .
JOURNAL OF BUILDING ENGINEERING, 2022, 60
[47]   Seismic fragility assessment of storage tanks considering different sources of uncertainty [J].
Wang, Mengzhu ;
Sun, Zongguang ;
Sun, Jiangang ;
Cui, Lifu ;
Lyu, Yuan ;
Wu, Yujian .
OCEAN ENGINEERING, 2023, 283
[48]   Effect of the angle of seismic incidence on the fragility curves of bridges [J].
Torbol, Marco ;
Shinozuka, Masanobu .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2012, 41 (14) :2111-2124
[49]   Seismic fragility of concrete box girder bridges in Malaysia [J].
Ghazali, Aqilah ;
Alaydrus, Hasan Al-Haris ;
Alih, Sophia C. ;
Vafaei, Mohammadreza .
10TH ASIA PACIFIC STRUCTURAL ENGINEERING AND CONSTRUCTION CONFERENCE 2018, 2019, 513
[50]   Seismic fragility analysis of a typical Indian PHWR containment: Comparison of fragility models [J].
Mandal, Tushar K. ;
Ghosh, Siddhartha ;
Pujari, Nikil N. .
STRUCTURAL SAFETY, 2016, 58 :11-19