船舶碰撞事件中铁路桥梁的可运行性安全分析

Vibration Pub Date : 2024-03-25 DOI:10.3390/vibration7020016
L. Bernardini, Andrea Collina, Gianluca Soldavini
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引用次数: 0

摘要

连接海岸附近岛屿的跨海大桥一直吸引着火车与桥梁相互作用领域研究人员的关注。对桥梁在船舶撞击桥墩时的运行性能进行分析,是最有趣、最具挑战性的模拟场景之一。本文旨在研究不同运行因素(如列车行驶速度、撞击船舶类型和撞击力大小)对火车通过跨海大桥时的运行安全性的影响。考虑到列车与桥梁之间的相互作用,重点还放在轮轨几何接触轮廓上,同时考虑新的和磨损的轮轨轮廓。这项工作的开展考虑到了一座具有代表性的连续桥面桥,该桥位于海床上,有六个跨度为 80 米的桥墩基础。为了量化不同运行参数对列车运行安全的影响,我们对船舶撞击事件中列车在桥上运行的情况进行了时域模拟。为此,根据铁路标准,通过轮轨垂直和横向接触力计算出脱轨和卸载系数。最后绘制了安全系数图,以评估冲击力大小和列车速度的综合影响。本次调查还显示,与磨损程度适中的轮轨轮廓相比,新的轮轨接触几何轮廓是最危险的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Railway Bridge Runability Safety Analysis in a Vessel Collision Event
Bridges connecting islands close to the coast and crossing the sea have been attracting the attention of several researchers working in the field of train–bridge interactions. A runability analysis of a bridge during the event of a ship impact with a pier is one of the most interesting and challenging scenarios to simulate. The objective of the present paper is to study the impact on the running safety of a train crossing a sea bridge as a function of different operational factors, such as the train travelling speed, the type of impacting ship, and the impact force magnitude. Considering train–bridge interactions, a focus is also placed on wheel–rail geometrical contact profiles, considering new and worn wheel–rail profiles. This work is developed considering a representative continuous deck bridge with pier foundations located on the sea bed composed of six spans of 80 m. Time-domain simulations of trains running on the bridge during ship impact events were carried out to quantify the effect of different operating parameters on the train running safety. For this purpose, derailment and unloading coefficients, according to railway standards, were calculated from wheel–rail vertical and lateral contact forces. Maps of the safety coefficients were finally built to assess the combined effect of the impact force magnitude and train speed. The present investigation also showed that new wheel–rail contact geometrical profiles represent the most critical case compared to moderately worn wheel–rail profiles.
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