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Numerical Simulation of Vertical Random Vibration of Train-Slab Track-Bridge Interaction System by PEM

机译:基于PEM的列车-平板轨道相互作用垂向随机振动数值模拟。

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The paper describes the numerical simulation of the vertical random vibration of train-slab track-bridge interaction system by means of finite element method and pseudoexcitation method. Each vehicle is modeled as four-wheelset mass-spring-damper system with two-layer suspension systems. The rail, slab, and bridge girder are modeled by three-layer elastic Bernoulli-Euler beams connected with each other by spring and damper elements. The equations of motion for the entire system are derived according to energy principle. By regarding rail irregularity as a series of multipoint, different-phase random excitations, the random load vectors of the equations of motion are obtained by pseudoexcitation method. Taking a nine-span simply supported beam bridge traveled by a train consisting of 8 vehicles as an example, the vertical random vibration responses of the system are investigated. Firstly, the suitable number of discrete frequencies of rail irregularity is obtained by numerical experimentations. Secondly, the reliability and efficiency of pseudoexcitation method are verified through comparison with Monte Carlo method. Thirdly, the random vibration characteristics of train-slab track-bridge interaction system are analyzed by pseudoexcitation method. Finally, applying the 3σrule for Gaussian stochastic process, the maximum responses of train-slab track-bridge interaction system with respect to various train speeds are studied.
机译:本文利用有限元法和伪激励法对列车-平板轨道桥梁相互作用系统的竖向随机振动进行了数值模拟。每个车辆都被建模为带有两层悬架系统的四轮质量弹簧-减振器系统。铁路,平板和桥梁的梁是通过三层弹性的伯努利-欧拉梁建模的,该梁通过弹簧和阻尼元件相互连接。根据能量原理导出整个系统的运动方程。通过将轨道不规则性视为一系列多点,不同相位的随机激励,通过伪激励方法获得了运动方程的随机载荷矢量。以由八辆车组成的火车行进的九跨简支梁桥为例,研究了系统的垂直随机振动响应。首先,通过数值实验获得了合适的离散数量的不规则轨道频率。其次,通过与蒙特卡罗方法的比较,验证了伪激励方法的可靠性和有效性。第三,采用伪激励法分析了列车-平板轨道桥梁相互作用系统的随机振动特性。最后,将3σ规则应用于高斯随机过程,研究了列车-平板轨道桥梁相互作用系统在不同列车速度下的最大响应。

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