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A simple and efficient numerical model for dynamic interaction of high speed train and railway structure including derailment during an earthquake

机译:一种简单有效的高速列车动态相互作用的数值模型,包括脱轨在地震期间

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A simple and efficient numerical model to solve the dynamic interaction of a high-speed train and railway structure including derailment and post-derailment during an earthquake is given. Mechanical model to express contact-impact behaviours between wheel and rail before derailment and between wheel and track structure after derailment is discussed. A contact model based on multipoint contact springs on the contact surface between wheel and the track structure after derailment is given. An efficient contact element to express contact-impact behaviour between the car body of the train and the railway structure during and after derailment is also given where the contact stiffness is described as a nonlinear function of the contact displacement. The motion of the train with nonlinear springs and dampers is modelled in multibody dynamics. The railway structure is modelled with various finite elements. The modal reduction is applied to equations of motion of the train and railway structure. A robust time integration using the exact time integration has been developed in the modal coordinate to solve the radical dynamic interaction including derailment during an earthquake to avoid the round-off error which normally appears in the numerical time integration for very small time increments. Numerical example is demonstrated.
机译:给出了一种简单而有效的数字模型,用于解决高速列车和铁路结构的动态相互作用,包括在地震期间包括脱轨和脱轨的脱轨。讨论了在脱轨后,在脱轨后表达车轮和轨道之间的接触冲击行为的机械模型。给出了基于多点触点弹簧的螺旋与轨道结构之间的多点触点弹簧的接触型号。还提供一种有效的接触元件,以表达列车的车身与铁路结构之间的接触冲击行为以及在脱轨期间和之后的铁路结构,其中接触刚度被描述为接触位移的非线性函数。火车与非线性弹簧和阻尼器的运动以多体动态建模。铁路结构采用各种有限元素建模。模态减少应用于火车和铁路结构的运动方程。在模态坐标中开发了使用确切时间集成的强大的时间集成,以解决地震期间包括脱轨的激进动态交互,以避免通常出现在数值集成中的循环错误以获得非常小的时间增量。数值例子进行说明。

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