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Running safety assessment of a train traversing a three-tower cable-stayed bridge under spatially varying ground motion

机译:在空间不同的地面运动下运行火车的安全评估穿越三塔电缆留桥

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摘要

To explore the influence of spatially varying ground motion on the dynamic behavior of a train passing through a three-tower cable-stayed bridge,a 3D train–track–bridge coupled model is established for accurately simulating the train–bridge interaction under earthquake excitation,which is made up of a vehicle model built by multi-body dynamics,a track–bridge finite element model,and a 3D rolling wheel–rail contact model.A conditional simulation method,which takes into consideration the wave passage effect,incoherence effect,and site-response effect,is adopted to simulate the spatially varying ground motion under different soil conditions.The multi-time-step method previously proposed by the authors is also adopted to improve computational efficiency.The dynamic responses of the train running on a three-tower cablestayed bridge are calculated with differing earthquake excitations and train speeds.The results indicate that(1)the earthquake excitation significantly increases the responses of the train–bridge system,but at a design speed,all the running safety indices meet the code requirements;(2)the incoherence and site-response effects should also be considered in the seismic analysis for long-span bridges though there is no fixed pattern for determining their influences;(3)different train speeds that vary the vibration characteristics of the train–bridge system affect the vibration frequencies of the car body and bridge.

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  • 来源
    《现代交通学报(英文版)》 |2020年第2期|184-198|共15页
  • 作者单位

    Shool of Civil Engineering Central South University Changsha 410075 China;

    Shool of Civil Engineering Central South University Changsha 410075 China;

    National Engineering Laboratory for High-Speed Railway Construction Changsha 410075 China;

    Shool of Civil Engineering Central South University Changsha 410075 China;

    Shool of Civil Engineering Central South University Changsha 410075 China;

    Shool of Civil Engineering Central South University Changsha 410075 China;

    Shool of Civil Engineering Central South University Changsha 410075 China;

    National Engineering Laboratory for High-Speed Railway Construction Changsha 410075 China;

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