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Induced Vibrations because of High-Speed Train Passage on Ballast and Non-Ballast Tracks

机译:道Train和非道last轨道上的高速列车通过引起的振动

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In this paper, a general and fully three dimensional multi-body-finite element-boundary element model formulated on time domain to predict vibrations due to train passage at the vehicle, the track and the free field is presented. The vehicle is modelled as a multi-body system and, therefore, the quasi-static and the dynamic excitation mechanisms due to train passage can be considered. The track is modelled using finite elements. The soil is considered as a homogeneous half-space by the boundary element method. This methodology could be used to take into account local soil discontinuities, underground constructions such as underpasses, and coupling with nearby structures that break the uniformity of the geometry along the track line. The non-linear behaviour of the structures could be also considered. In the present paper, in order to test the model, vibrations induced by high-speed train passage are evaluated for a ballasted track. The quasi-static and dynamic load components are studied and the influence of the suspended mass on the vertical loads is analyzed. The numerical model is validated by comparison with experimental records from two HST lines. Finally, the dynamic behaviour of a transition zone between a ballast track and a slab track is analyzed and the obtained results from the proposed model are compared with those obtained from a model with invariant geometry with respect to the track direction.
机译:在本文中,提出了在时域上建立的通用三维三维有限元边界元模型,用于预测由于列车通过车辆,轨道和自由场而引起的振动。车辆被建模为多体系统,因此,可以考虑由于火车通过而产生的准静态和动态激励机制。使用有限元对轨道进行建模。边界元法将土壤视为均匀的半空间。该方法可用于考虑局部土壤的不连续性,地下建筑(例如地下通道)以及与附近结构的耦合,这些结构破坏了沿轨迹线的几何形状的均匀性。还可以考虑结构的非线性行为。在本文中,为了测试模型,对道train轨道评估了高速列车通过引起的振动。研究了准静态和动态载荷分量,并分析了悬浮质量对垂直载荷的影响。通过与两条HST生产线的实验记录进行比较,验证了该数值模型的有效性。最后,分析了道ast轨道和平板轨道之间过渡区域的动态行为,并将所提出模型的结果与几何形状相对于轨道方向不变的模型所获得的结果进行了比较。

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