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首页> 外文期刊>Journal of Civil Engineering and Management >NONLINEAR FINITE ELEMENT ANALYSIS OF CONTINUOUS WELDED RAIL-BRIDGE INTERACTION: MONITORINGBASED CALIBRATION
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NONLINEAR FINITE ELEMENT ANALYSIS OF CONTINUOUS WELDED RAIL-BRIDGE INTERACTION: MONITORINGBASED CALIBRATION

机译:连续桥梁-桥梁相互作用的非线性有限元分析:基于监测的标定

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Continuous welded rail is of high interest to operators of railway infrastructure facilities because of the reduced maintenance work and better train driving dynamics it offers. However, the application of continuous welded rail, in particular associated with its interaction with the superstructures of e.g. bridges, requires special caution with regard to the rail stresses in the transition area between the structure and the free field. These stresses are not only influenced by thermal deformations of the bridges but also by the clamp systems between the rails and e.g. the bridge. In general, these connectors are represented by spring elements during modelling, which: (a) causes singularities in the stress distributions in the rails, and (b) cannot capture all the mechanical system changes occurring due to loading, thermal effects, etc. The target of this paper is to present an alternative way of modelling the connection between rails and bridge superstructure based on composite materials which can overcome the disadvantages of the spring model. In particular, a nonlinear model of the whole system was developed for ballasted and non-ballasted track. Special attention was paid to the calibration of rail- bridge interaction and boundary conditions using measured data and code specifications. The aim of this study was to use the results of in-situ measurements to analyse the admissible stress in rails due to their interaction with a bridge caused by temperature loading.
机译:由于减少了维护工作并提供了更好的列车行驶动力,连续焊接的钢轨对铁路基础设施运营商非常感兴趣。然而,连续焊接的轨道的应用,特别是与它与例如钢结构的上部结构的相互作用有关。对于桥梁,在结构和自由场之间的过渡区域中的轨道应力方面需要特别注意。这些应力不仅受到桥的热变形的影响,而且还受到铁轨与铁轨之间的夹紧系统的影响。桥。通常,这些连接器在建模过程中由弹簧元件表示,它们:(a)引起导轨中应力分布的奇异,并且(b)无法捕获由于载荷,热效应等引起的所有机械系统变化。本文的目的是提出一种基于复合材料的钢轨和桥梁上部结构之间的连接建模的替代方法,该方法可以克服弹簧模型的缺点。特别是,针对压载和非压载轨道,开发了整个系统的非线性模型。使用测量数据和代码规范对铁路桥梁相互作用和边界条件的校准给予了特别关注。这项研究的目的是利用现场测量的结果来分析由于温度荷载引起的钢轨与桥梁相互作用时钢轨的容许应力。

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