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On the prediction of the interaction effect caused by continuous ballast on filler beam railway bridges by experimentally supported numerical studies

机译:实验支持数值研究预测连续压载对填充梁铁路桥梁的相互作用影响

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摘要

To estimate mechanical properties to be used for numerical analyses of railway bridges, experimental tests on railway ballast have been performed within the framework of the European research project DETAILS (Design for optimal life cycle costs of high-speed railway bridges by enhanced monitoring systems), supported by the European RFCS-Fund. German two-track railway bridges often provide two separated bridge decks. However, interaction effects between the two bridge decks take place due to a continuous ballast layer. Not only in view of numerical modelling, the mechanical behaviour of the ballast in the contact area between the separated bridge decks is of great interest, as SLS and even ULS issues are affected by the so far neglected interaction. After a short introduction, experimental tests are described in the first part of the paper. As a first approximation, it is shown that linear elastic springs can be used for taking into account the load transfer between ballast-connected structures. Thus, the springs represent a kind of shear stiffness of the ballast layer. Considering the test results, such an approach is applied for numerical analysis of a filler beam bridge with two separated decks and a continuous ballast layer. The modelling approach and related numerical results are presented in the second part of the paper. As conclusion both experimental and numerical results are discussed with regard to the dynamic design of simply supported and ballasted railway bridges.
机译:为了估算用于铁路桥梁数值分析的机械性能,已在欧洲研究项目DETAILS(通过增强的监控系统设计高速铁路桥梁的最佳生命周期成本设计)的框架内对铁路道ball进行了实验测试,由欧洲RFCS基金支持。德国的两轨铁路桥梁通常提供两个分开的桥面。但是,由于连续的压载层,两个桥面板之间会发生相互作用。不仅从数值建模的角度来看,压载物在分离的桥面之间的接触区域中的机械性能也引起了极大的兴趣,因为SLS甚至ULS问题都受到迄今为止被忽略的相互作用的影响。简短介绍之后,本文的第一部分描述了实验测试。作为第一近似,示出了可以使用线性弹性弹簧来考虑与镇流器连接的结构之间的载荷传递。因此,弹簧代表道the层的一种抗剪刚度。考虑到测试结果,这种方法可用于具有两个独立甲板和连续压载层的填充梁桥的数值分析。本文的第二部分介绍了建模方法和相关的数值结果。作为结论,讨论了关于简支和压载铁路桥梁动力设计的实验和数值结果。

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