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Comparison of dynamic effects of high-speed traffic load on ballasted track using a simplified two-dimensional and full three-dimensional model.

机译:使用简化的二维和完整三维模型比较高速交通负荷对压载轨道的动态影响。

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摘要

The vertical dynamic actions transmitted by railway vehicles to the ballasted track infrastructure is evaluated taking into account models with different degree of detail. In particular, we have studied this matter from a two-dimensional (2D) finite element model to a fully coupled three-dimensional (3D) multi-body finite element model. The vehicle and track are coupled via a non-linear Hertz contact mechanism. The method of Lagrange multipliers is used for the contact constraint enforcement between wheel and rail. Distributed elevation irregularities are generated based on power spectral density (PSD) distributions which are taken into account for the interaction. The numerical simulations are performed in the time domain, using a direct integration method for solving the transient problem due to the contact nonlinearities. The results obtained include contact forces, forces transmitted to the infrastructure (sleeper) by railpads and envelopes of relevant results for several track irregularities and speed ranges. The main contribution of this work is to identify and discuss coincidences and differences between discrete 2D models and continuum 3D models, as wheel as assessing the validity of evaluating the dynamic loading on the track with simplified 2D models
机译:考虑到不同细节程度的模型,对铁路车辆传递到压载轨道基础设施的垂直动力作用进行了评估。特别是,我们已经从二维(2D)有限元模型到完全耦合的三维(3D)多体有限元模型进行了研究。车辆和轨道通过非线性赫兹接触机制耦合。拉格朗日乘数法用于轮轨之间的接触约束实施。基于功率谱密度(PSD)分布生成了分布的高程不规则性,考虑了相互作用。数值模拟是在时域中执行的,使用直接积分方法来解决由于接触非线性而引起的瞬态问题。获得的结果包括接触力,通过护垫传递到基础设施(轨枕)的力以及一些轨道不平顺和速度范围的相关结果的包络。这项工作的主要贡献是识别和讨论离散的2D模型与连续的3D模型之间的一致性和差异,例如使用简化的2D模型来评估在轨道上评估动态载荷的有效性。

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