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Vector Form Intrinsic Finite Element Method for Analysis of Train-Bridge Interaction Problems Considering The Coach-Coupler Effect

机译:载体形式的内在有限元方法,用于考虑教练耦合效应的火车桥相互作用问题

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In this paper, the vector form intrinsic finite element (VFIFE) method is presented for analysis the train-bridge systems considering the coach-coupler effect. The bridge is discretized into a group of mass particles linked by massless beam elements and the multi-body coach with suspension systems is simulated as a set of mass particles connected by parallel spring-dashpot units. Then the equation of motion of each mass particle is solved individually and the internal forces induced by pure deformations in the massless beam elements are calculated by a fictitious reverse motion method, in which the structural stiffness matrices need not be updated or factorized. Though the vector-form equations resulting from the VFIFE method cannot be used to compute the structural frequencies by the eigenvalue approach, this study proposes a numerical free vibration test to identify the bridge frequencies for evaluating the bridge damping. Numerical verifications demonstrate that the present VFIFE method performs as accurately as previous numerical ones. The results show that the couplers play an energy-dissipating role in reducing the car bodies' response due to the bridge-induced resonance, but not in their response due to the train-induced resonance because of the bridge's intense vibration. Meanwhile, a dual-resonance phenomenon in the train-bridge system occurs when the coach-coupler effect is considered in the vehicle model.
机译:在本文中,载体内在有限元(VFIFE)方法用于分析考虑Coach耦合器效果的火车桥系统。将桥梁被离散化成由无麻自由束元件连接的一组质量颗粒,并且用悬架系统的多体教练被模拟为通过并联弹簧划线单元连接的一组质量粒子。然后,每个质量颗粒的运动方程单独求解,并且通过虚拟反向运动方法计算通过无麻环元件中的纯变形引起的内力,其中不需要更新结构刚度矩阵。虽然从VFIFE方法而生成的矢量形式的方程不能用于计算由特征值的方法的结构的频率,本研究提出的数值自由振动试验,以确定用于评价桥阻尼桥频率。数值验证表明,目前的VFIFE方法作为先前数值的方法执行。结果表明,由于桥梁强烈的振动,耦合器在减少由于桥接谐振引起的谐振引起的响应中的响应来发挥能量消散作用。同时,当在车辆模型中考虑了教练耦合器效果时,可以发生火车桥系统中的双谐振现象。

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