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Validation of a reduced model of railway track allowing long 3D dynamic calculation of train-track interaction

机译:验证简化的铁路轨道模型,可对火车与轨道的相互作用进行长时间的3D动态计算

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摘要

In order to face challenges of increased traffic and speed on their infrastructures, railway companiesneed to develop numerical tools able to predict the dynamic behaviour of the track. Currently, twoapproaches are widely used: the first one is a train-based methodology in which train dynamic is well reproduced but track is only represented as equivalent springs, the second one is a FEM model or FEM/BEM model of track in which the train is simply modeled as a moving load but the complexity of track taken into account.Dynavoie software studied in this work aims to offer a new approach by representing in details both track and train. Understanding train-track interaction requires transients on long track segments, leading to very large finite element models and high computation time. The specificity of Dynavoie software is to use periodic properties of the track to generate a reduced slice model, and then build the track as a combination of these slices. Computation time is then highly reduced. The present work focuses on the initial step of the model reduction where computations in the frequency and wave domains are used. The resulting 3D periodic computations are compared to 2.5D FEM/BEM results from the literature and the content of the receptance curve is discussed in relation with dispersion curves.
机译:为了应对基础设施交通和速度增加的挑战,铁路公司需要开发能够预测轨道动态行为的数值工具。当前,有两种方法被广泛使用:第一种方法是基于火车的方法,其中很好地再现了火车的动态特性,但是轨道仅表示为等效弹簧,第二种方法是火车的FEM模型或FEM / BEM模型。可以简单地将其建模为运动负载,但要考虑到轨道的复杂性。本工作中研究的Dynavoie软件旨在通过详细表示轨道和火车来提供一种新方法。了解火车-轨道相互作用需要长轨道段上的瞬变,从而导致非常大的有限元模型和大量的计算时间。 Dynavoie软件的特殊性是使用轨道的周期性属性来生成缩减的切片模型,然后将这些切片组合在一起来构建轨道。这样就大大减少了计算时间。本工作着重于模型简化的初始步骤,其中使用了频域和波域中的计算。将所得的3D周期性计算与文献中的2.5D FEM / BEM结果进行了比较,并讨论了色散曲线中接受曲线的内容。

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