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Dynamic analysis of the train-bridge system considering the non-linear behaviour of the track-deck interface

机译:考虑轨道甲板接口非线性行为的火车桥系统动态分析

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This article presents an efficient computational methodology for solving the train-track-bridge interaction problem, including track irregularities and considering the non-linear behaviour of the track-deck interface. One of the novelties of the work is the proposal of a specific finite element used to model the track-deck interface, based on an assembly of a friction contact element and a non-linear spring, which is generally not used in non-linear dynamic problems. This element automatically performs changes in the longitudinal resistance of the track, according to the positions of the traffic loads, and takes into account the loading history. The dynamic analyses are performed based on an iterative methodology implemented in AIVE software, which takes ad-vantage of the advanced modeling tools of Abaqus software controlled on Matlab. This software ensures flex-ibility in the selection of the methods for solving the dynamic problem and allows the incorporation of non-linearities in the vehicle and bridge models, including their interfaces. A parametric study was performed in order to demonstrate the importance of including the non-linear behaviour at the track-deck interface in the evaluation of the dynamic responses of the bridge and vehicle subsystems, under different scenarios of deck temperature, horizontal stiffness of the supports and deck cross-sections. The results show that the responses of the track-deck interface are more influenced by the effects of temperature variations than by the effects of vertical traffic loads, particularly for medium and large span bridges. Significant plastic incursions were detected at the track-deck interface under realistic temperature scenarios, particularly on the side of the mobile support. Under vertical traffic loads, the extension of the regions with plastic behaviour proved to be sensitive to var-iations in the horizontal stiffness of the support. Additionally, another important achievement of this study was the evaluation of the plastic incursions at the track-deck interface for different bridges typologies. Relevant incursions were detected for medium and large span bridges, where the extension of these regions can reach 25-55% of the bridge span, otherwise, for short span bridges, practically no significant plasticized regions were identified. Non-linear incursions on the track-deck interface cause an overall reduction of the track-bridge stiffness, leading to an increase of the vertical movements of the bridge, and, inherently, of the vehicle's dynamic responses. The evaluation of the extension of the ballast plastic regions for the different analysis scenarios, which is still a topic shortly addressed in the bibliography, will be particularly useful for upgrading the existing methods for assessment of the dynamic behavior of railway bridges.
机译:本文提出了一种有效的计算方法,用于解决火车轨道 - 桥接交互问题,包括跟踪违规行为,并考虑跟踪码头接口的非线性行为。该工作的新奇怪之一是基于摩擦接触元件的组件和非线性弹簧的组装来模拟轨道甲板接口的特定有限元件的提议,这通常不用于非线性动态问题。根据流量负载的位置,此元素根据流量负载的位置自动执行轨道的纵向电阻的变化,并考虑到加载历史记录。基于AIV软件中实现的迭代方法执行动态分析,该方法采用在MATLAB上控制的ABAQUS软件的高级建模工具的广告。该软件可确保选择求解动态问题的方法中的Flex-Ibility,并允许在车辆和桥梁模型中加入非线性,包括其接口。执行参数研究,以证明在桥接和车辆子系统的动态响应的评估中包括在曲柄和车辆子系统的动态响应中的非线性行为的重要性,在不同的甲板温度的情况下,支撑件的水平刚度和甲板横截面。结果表明,轨道甲板接口的响应受温度变化影响的影响比垂直交通载荷的影响,特别是对于中型和大跨度桥。在现实的温度场景下在轨道甲板接口处检测到显着的塑料侵入,特别是在移动支持的一侧。在垂直交通负荷下,具有塑性行为的区域的延伸证明是对支撑件水平刚度的变化性的敏感性。此外,该研究的另一个重要成就是评估在Track-Deck界面处的塑料入侵,用于不同的桥本类型。为中型和大跨度桥检测相关的侵入,其中这些区域的延伸可以达到25-55%的桥跨度,否则,对于短跨度桥,实际上没有鉴定出明显的塑化区域。轨道甲板接口上的非线性入侵导致轨道桥刚度的总体减小,从而增加了桥梁的垂直运动,并且固有地,车辆的动态响应。对不同分析情景的镇流器塑料区的延伸的评价,这仍然是在参考书目中不久的话题,对升级现有方法进行升级,以便评估铁路桥的动态行为。

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