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Research Article

Study on Optimal Bracketed Duration Scheme of Seismic Time History Analysis for High-Speed Railway Track-Bridge System

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Pages 906-921 | Received 13 Oct 2022, Accepted 25 May 2023, Published online: 05 Jun 2023
 

ABSTRACT

Seismic duration significantly impacts the structural seismic response. In order to obtain a correct time history analysis result of structural seismic design, determining a reasonable seismic duration scheme is imperative. In this paper, a five-span simply supported beam bridge and China Railway Track System (CRTS) II slab ballastless track system is taken as the research focus. A finite-element model for a high-speed railway track-bridge system was developed. The influence mechanism of starting and end threshold on seismic response was analyzed. Different bracketed duration schemes were put forward, and their applicability was assessed. The optimal bracketed duration scheme of time history analysis for a high-speed railway track-bridge system was determined. The results indicate a response curve deviation between the full duration and partial duration in the starting part due to the inconsistent structural movement trends and a deviation in the end part because of the structure entering a free vibration state in advance. When calculating the seismic peak response, the starting threshold A and end threshold B at both ends should be taken as5% of peak acceleration. When calculating seismic residual response, the starting threshold C at the left end should be taken as 25% of peak acceleration.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Data availability statement

All data included in this study are available upon request by contact with the corresponding author https://doi.org/10.6084/m9.figshare.22365109.v2.

Additional information

Funding

The research described in this study was financially supported by the National Natural Science Foundations of China [U1934207, 52078487, 52178180], Innovative Province construction special Project of Hunan [2019RS3009], Transportation Science and Technology Project of Hunan [202011], Innovation-driven Project of Central South University [502501006], and the Fundamental Research Funds of the Central Universities of Central South University [2022ZZTS0150]. We are grateful for resources from the High Performance Computing Center of Central South University.

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