Stochastic dynamic analysis of the train-track-bridge system under tridirectional spatially correlated ground motions

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초록

Due to seismic spatial variation and the correlation between tridirectional ground motions, the random vibrations of the train-track-bridge system are different from those under uniform seismic excitations. To study this difference, a high-speed train traversing a multi-span bridge under both track irregularities and tridirectional spatially correlated ground motions is investigated by using the pseudo-excitation method. Through calculating stochastic dynamic responses of the system, the influences of seismic spatial variation and the correlation between tridirectional ground motions are evaluated for the maximum standard deviations of bridge accelerations, train accelerations, the wheel-rail contact force, and the offload factor. The results show that these influences significantly affect the stochastic dynamic responses of the train-track-bridge system. Therefore, they cannot be ignored in the stochastic dynamic analysis of the train-track-bridge system under multi-support seismic excitations.

키워드

Incoherence effectNon-uniform seismic excitationPseudo-excitation methodRandom vibrationSeismic responseWave passage effectCABLE-STAYED BRIDGESSEISMIC RESPONSERANDOM VIBRATIONWAVE-PASSAGESITEALGORITHMSUBJECT
제목
Stochastic dynamic analysis of the train-track-bridge system under tridirectional spatially correlated ground motions
저자
Ma, ChunyanChoi, Dong-Ho
DOI
10.1016/j.soildyn.2022.107324
발행일
2022-09
유형
Article
저널명
Soil Dynamics and Earthquake Engineering
160
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1 ~ 15