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Influences of Soil-Structure Interaction on Coupled Vibration of Train-Bridge System: Theoretical and Experimental Study

机译:土-结构相互作用对列车-桥梁系统耦合振动的影响:理论和实验研究

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摘要

A numerical solution for the dynamic response of train-track-bridge coupled system taking into account the influence of soil-structure interaction is studied and verified by field experiments. A three-dimensional vehicle-track-bridge coupling dynamics model is developed, in which the vehicle subsystem, the track subsystem and the bridge subsystem are coupled through wheel-rail interaction and track-bridge interaction, respectively. The soil-structure interaction between the bridge foundation and the soil is simulated by spring stiffness exerted on group-pile foundation. In a case study, the dynamic responses of a high-speed train and a continuous beam bridge are calculated by three models, that is fixed-base model, equivalent-stiffness model and the proposed whole-pile model. The comparison of simulated and experimental results show that soil-structure interaction has significant influence on the lateral dynamic response of the bridge; The whole-pile model is proposed to study the coupled vibration of bridge and vehicle, which gives more reasonable simulation result than the other two models.
机译:研究并考虑了土-结构相互作用对列车-轨道-桥梁耦合系统动力响应的数值解,并通过现场试验进行了验证。建立了三维车辆-轨道-桥梁耦合动力学模型,其中车辆子系统,轨道子系统和桥梁子系统分别通过轮轨相互作用和轨道-桥梁相互作用耦合。通过施加在群桩基础上的弹簧刚度来模拟桥梁基础与土壤之间的土-结构相互作用。在一个案例研究中,高速列车和连续梁桥的动力响应是通过三种模型计算的,即固定基础模型,等效刚度模型和拟议的整体桩模型。模拟和实验结果的比较表明,土与结构的相互作用对桥梁的侧向动力响应有显着影响。提出了一种全桩模型来研究桥梁与车辆的耦合振动,与其他两种模型相比,其模拟结果更为合理。

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