Seismic damage features of high-speed railway simply supported bridge–track system under near-fault earthquake

Author:

Guo Wei12,Gao Xia12,Hu Ping3ORCID,Hu Yao12,Zhai Zhipeng12,Bu Dan4,Jiang Lizhong12

Affiliation:

1. School of Civil Engineering, Central South University, Changsha, China

2. National Engineering Laboratory for High Speed Railway Construction, Changsha, China

3. School of Civil Engineering, University of South China, Hengyang, China

4. Hunan Architectural Design Institute Limited Company, Changsha, China

Abstract

Seismic loads pose a potential threat to the high-speed railway bridges in China, which have been rapidly developing in recent years, especially for those subjected to the near-fault earthquakes. The previous researches on high-speed railway bridges usually concern the far-field earthquake, and the damage of high-speed railway bridge–track system subjected to the near-fault earthquake has not been well studied. In this article, a seven-span high-speed railway simply supported bridge–track system is selected to explore the seismic damage features under the excitation of near-fault earthquake which possesses characteristics of obvious velocity pulse and high-frequency vibration. First, a detailed finite element model of the selected bridge–track system is established and calibrated by the experimental data and design code. Then the low-frequency pulse-type portion and the high-frequency background portion are separated from the selected eight original near-fault records, and a series of nonlinear dynamic analysis is conducted. The results show that the background portion leads to more serious damage of the bridge–track system than the pulse-type portion. Due to the high stiffness of high-speed railway bridge–track system, the background portion with high-frequency vibration characteristic produces the main part of seismic response of system. As for the damage part of system, the weakest component of the bridge–track system is the sliding layer, followed by the shear alveolar.

Funder

National Natural Science Foundation of China

Development Program for Changjiang scholars and innovative team

innovation-driven project of central south university

Publisher

SAGE Publications

Subject

Building and Construction,Civil and Structural Engineering

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