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Consideration of nonlinear wheel-rail contact forces for dynamic vehicle-bridge interaction in high-speed railways

机译:高速铁路中动车桥相互作用的非线性轮轨接触力的考虑

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In this work models with nonlinear wheel-rail contact forces are considered for analysing the dynamic interaction between high speed trains and bridges, in order to study dynamic effects both in the bridge and in the vehicles resulting from the coupling. Nonlinear contact models may be necessary for evaluating the stability and the safety of running traffic in situations such as vehicle overturn when the train is crossing a bridge under strong lateral winds or when an earthquake occurs. For studying the coupled dynamic response of trains and bridges, models of multibody dynamics are used for vehicles and the finite element method for structures. Special relevance is given here to the consideration of contact interaction forces between railway vehicles and the track. Four different interaction models are compared in this work: (1) a model where the vehicle wheelset is considered to be rigidly coupled to the track; (2) a staggered uncoupled method in which vehicle and structure are analysed separately; (3) a linear contact model in which lateral relative displacements between rails and train wheels are allowed, assuming biconic wheel and rail profiles and linear Kalker theory for tangential contact; (4) a nonlinear model in which realistic wheel and rail profiles, Hertz's nonlinear theory for normal contact and Kalker's nonlinear theory for tangential contact are used. The different models are applied and compared to experimental measurements for a test case of a high-speed train in China.
机译:在该工作模型中,考虑了具有非线性轮轨接触力的模型来分析高速列车和桥梁之间​​的动力相互作用,以便研究桥梁和车辆中的动力效应。在列车在强侧风下过桥或发生地震时车辆倾覆的情况下,非线性接触模型对于评估行车的稳定性和安全性可能是必要的。为了研究火车和桥梁的耦合动力响应,对车辆采用了多体动力学模型,对结构采用了有限元方法。此处特别考虑了铁路车辆与轨道之间的接触相互作用力。在这项工作中比较了四个不同的交互模型:(1)一种模型,其中轮对被认为与轨道刚性耦合; (2)交错解耦方法,其中车辆和结构分别进行分析; (3)线性接触模型,其中允许轨道和火车车轮之间的横向相对位移,并假设双曲线车轮和轨道轮廓以及切线接触的线性卡尔克理论; (4)非线性模型,其中使用了实际的轮轨轮廓,Hertz的法线接触非线性理论和Kalker的切线接触非线性理论。应用了不同的模型并将其与中国高速火车测试案例的实验测量结果进行比较。

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