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Dynamic analysis of high-speed railway train-bridge system after barge collision

机译:高速铁路列车—桥梁碰撞后的动力学分析

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In this paper, a framework is proposed for dynamic analysis of train-bridge systems with a damaged pier after barge collision. In simulating the barge-pier collision, the concrete pier is considered to be nonlinear-inelastic, and the barge-bow is modeled as elastic-plastic. The changes of dynamic properties and deformation of the damaged pier, and the additional unevenness of the track induced by the change of deck profile, are analyzed. The dynamic analysis model for train-bridge coupling system with a damaged pier is established. Based on the framework, an illustrative case study is carried out with a 5x32 m simply-supported PC box-girder bridge and the ICE3 high-speed train, to investigate the dynamic response of the bridge with a damaged pier after barge collision and its influence on the running safety of high-speed train. The results show that after collision by the barge, the vibration properties of the pier and the deck profile of bridge are changed, forming an additional unevenness of the track, by which the dynamic responses of the bridge and the car-body accelerations of the train are increased, and the running safety of high-speed train is affected.
机译:本文提出了一个框架,用于动态分析桥墩碰撞后受损的桥墩系统。在模拟驳船-码头碰撞时,混凝土墩被认为是非线性无弹性的,而驳船弓则被建模为弹塑性的。分析了受损墩墩的动力特性和变形的变化,以及由于甲板轮廓的变化而引起的轨道不平整度的变化。建立了墩墩受损的车桥耦合系统动力学分析模型。在此框架的基础上,以5x32 m简支PC箱梁桥和ICE3高速列车为例,进行了案例研究,以研究驳船碰撞后受损墩桥的动力响应及其影响。高速列车的运行安全性。结果表明,在驳船碰撞后,桥墩和桥面轮廓的振动特性发生了变化,形成了轨道的不平整度,从而使桥梁的动力响应和列车的车体加速度产生变化。增加了高速列车的运行安全性。

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