Seismic Response Analysis of Multi-Span Continuous Deck-Type Reinforced Concrete Double Ribs Arch Bridge

Article Preview

Abstract:

Reinforced concrete rib arch bridge is widely used in southwest of china, therefore, it is practically significant to assess the seismic performance of this kind of bridge. In this paper, a deck-type double ribs arch bridge which has eleven large continuous spans is taken for instance. The finite element calculation models for the bridge are established considering arch effect. The M-method principle is used to simulate the pile-soil-structure interaction (PSSI), and multiple Ritz vector method is introduced to analyze the dynamic characteristics. Moreover, the seismic response of arch bridge is analyzed by the response spectrum method. Numeral results show that, the dominant vibration mode of the Multi-span continuous deck-type reinforced concrete rib arch bridge is out-of-plane mode, owing to the weak lateral stiffness. The arch effect can reinforce the longitudinal stiffness of bridge, but weaken the lateral stiffness. Combined with horizontal direction orthogonal seismic action, arch effect can significantly reduce the axial force of rib, while increase the moment and shear of the arch foot and the displacement of the arch. The rib arch, the 1/4 points and the junctions of ribs and beams are the seismic control points. PSSI is the key factor of bridge seismic.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1453-1459

Citation:

Online since:

January 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Xijing Mo: Research on the Load-carrying Capacity Comprehensive Evaluation Mode of Reinforced Concrete Rib Arch Bridge Provided—A Case Study of Deck Double-rib Arch Bridge(Chongqing Jiaotong University, 2009), In Chinese.

Google Scholar

[2] Yan Wang, Guangpo Zhang and Hua Chen: World Earthquake Engineering Vol. 26 (2010), p.61, In Chinese.

Google Scholar

[3] Dalin Hu, Tianqi Qu, Hongbin Wang and Longgang Chen: Applied Mechanics and Materials Vol. 256-259(2012), p.1496.

Google Scholar

[4] Xiaoguang Li: Research on the Lateral Stability and Seismic Response Analysis of Reinforced Concrete Double-rib Arch Bridge(Dalian Technological University, 2004), In Chinese.

Google Scholar

[5] Jingbin Li, Sujuan Ge and Huai Chen: World Earthquake Engineering Vol. 21 (2005), p.110, In Chinese.

Google Scholar

[6] Kaizhong Xie, Rong Qin, Jianjun Wang: Central South Highway Engineering Vol. 30 (2005), p.15, In Chinese.

Google Scholar

[7] Kawashima K, Mizoguti A, in: 12th World Conference on Earthquake Engineering, (2000), p.1824.

Google Scholar

[8] Guoding Wang: Calculation of Arcade in Arch Bridge Seconded Edition (China Communications Press, Beijing 1998), In Chinese.

Google Scholar

[9] Shizhu Tian, Changming Zhang and Weibing Luo: Advanced Materials Research Vol. 168-170(2010), p.2580.

Google Scholar