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Dynamic analysis of the train and slab track coupling system with finite elements in a moving frame of reference

机译:移动参考框架中有限元列车与平板轨道耦合系统的动力学分析

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Slab tracks are widely used worldwide in high-speed railways. In order to investigate the dynamic behavior of the train and slab track coupling system, a new approach, based on conceptions of the vehicle element and track element, is developed with finite elements in a moving frame of reference. By discretizing the slab track subsystem into track elements that flow with the moving vehicle, the proposed method eliminates the need for keeping track of the vehicle position with respect to the track model. The governing equations are formulated in a coordinate system traveling at a constant velocity, and the associated stiffness matrix, mass matrix and damping matrix for the track element in a moving frame of reference are derived. The vehicle element is introduced to model a car with primary and secondary suspension systems, which has 26 degrees of freedom, where 10 degrees of freedom are used to describe the vertical movement of the car, and 16 degrees of freedom are associated with the rail displacements. In the numerical study, four cases of application examples are presented taking into consideration the effects of track roughness, train speed and track parameters. The numerical solutions compare favorably with the results obtained by alternative methods. The method is shown to work for varying train speed and track parameters, and has several advantages over the conventional finite element method in a fixed system of reference.
机译:平板轨道在全球范围内广泛用于高速铁路。为了研究火车和平板轨道耦合系统的动态行为,基于车辆元素和轨道元素的概念,开发了一种新方法,该方法在移动参考系中具有有限元素。通过将平板轨道子系统离散为随移动车辆流动的轨道元素,所提出的方法消除了相对于轨道模型保持跟踪车辆位置的需求。在以恒定速度行进的坐标系中制定控制方程式,并得出在移动参考系中轨道元素的关联刚度矩阵,质量矩阵和阻尼矩阵。引入车辆元素来对具有一级和二级悬架系统的汽车进行建模,该系统具有26个自由度,其中10个自由度用于描述汽车的垂直运动,而16个自由度与轨道位移相关。在数值研究中,考虑了轨道粗糙度,列车速度和轨道参数的影响,给出了四个应用示例。数值解与通过其他方法获得的结果相比具有优势。该方法显示可用于变化的火车速度和轨道参数,并且在固定参考系统中具有优于常规有限元方法的多个优点。

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