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Analysis of Lateral Displacements in Large Railway Viaducts Under Traffic Loads. Impact on Ride Safety and Passenger Comfort.

机译:交通荷载下大型铁路高架桥的横向位移分析。对乘坐安全性和乘客舒适度的影响。

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摘要

The increasing design speed of the new high speed lines and the stringent requirements on track alignment parameters are leading to a sustained increase of the number of railway viaducts. The relevant standards impose limiting values on lateral vibrations. Both the Spanish and European standards establish a minimum value for the first natural frequency of lateral vibration of a span, that should not be lower than fh0 = 1,2 Hz. This limit was originally proposed by ERRI committee D181, which assessed the lateral forces in railway bridges. This limit was proposed in order to avoid lateral resonance in railway vehicles going across the structure, taking into account that the frequencies of lateral vibration of railway vehicles are, in general, not greater than 1,0 Hz. In the case of large continuous viaducts with high piers, the lateral deformations occurring during a train pass-by can be significant and the natural frequencies of the first mode of vibration of the deck can be very low. In these cases it is not clear whether the required verifications must be applied to spans considered independently, to several successive spans or to the whole viaduct. There is currently no analysis methodology allowing to assess this situation and check the viaduct design against the requirements of ride safety and passenger comfort. This paper analyzes the lateral deformations of a large continuous viaduct and the infrastructure vehicle interaction effects due to the circulation of freight trains and several types of high speed train sat different speeds. The application of this methodology will allow an optimized design of viaducts with significant lateral deformations that cannot be justified only by using the simplified criteria of the current applicable standards. In such cases, the compliance with standards may lead to over dimensioning or in other cases to neglect the limits without the adequate verification of the proper infrastructure behavior once it has been commissioned. As it is the case for vertical deformations, for which the European standards require the assessment of dynamic effects, we stress the need for a dynamic analysis of the effects of lateral deformations in large railway viaducts.
机译:新型高速铁路设计速度的提高以及对轨道对准参数的严格要求,导致铁路高架桥数量的持续增加。相关标准对横向振动施加了极限值。西班牙和欧洲标准都为跨度的第一横向振动固有频率确定了最小值,该最小值不应低于fh0 = 1,2 Hz。此限制最初是由ERRI委员会D181提出的,该委员会评估了铁路桥梁的横向力。考虑到铁路车辆的横向振动频率通常不大于1,0 Hz,提出该限制是为了避免铁路车辆横穿结构时产生横向共振。在具有高桥墩的大的连续高架桥的情况下,在列车通过期间发生的侧向变形会很大,并且甲板的第一振动模式的固有频率会非常低。在这些情况下,不清楚是否必须对独立考虑的跨度,几个连续跨度或整个高架桥进行所需的验证。当前没有分析方法可以评估这种情况并对照乘车安全性和乘客舒适性要求检查高架桥设计。本文分析了一个大型连续高架桥的横向变形以及由于货运列车和几种不同速度的高速列车的流通而引起的基础设施车辆相互作用的影响。这种方法的应用将允许对具有明显横向变形的高架桥进行优化设计,而仅通过使用当前适用标准的简化标准就无法证明其合理性。在这种情况下,对标准的遵守可能会导致尺寸过大,或者在其他情况下,一旦调试完毕就没有适当的基础设施行为的充分验证,便会忽略限制。欧洲标准要求评估动态变形的情况是垂直变形的情况,因此我们强调需要对大型铁路高架桥的横向变形的影响进行动态分析。

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