Yu-tao Nie, Wei Guo, Li-zhong Jiang, Zhi-wu Yu, Chen Zeng, Yang Wang, Xu-en He, Shao-xun Ren, Ren-qiang Huang, Guang-yue Liang, Chang-qing Li
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引用次数: 0
摘要
突发性地震对列车在高速铁路桥梁上的运行安全构成威胁,而桥墩的刚度是影响列车-桥梁系统动态响应的因素之一。本文基于动态实验系统进行了列车在高速铁路桥梁上运行的实验,并建立了相应的数值模型。通过实验验证了数值模型的可靠性。然后,分析了实验和数值数据,揭示了桥墩高度对列车在桥梁上运行安全的影响。结果表明,墩高变化时,墩高 30 m 以下桥梁的频率变化较大;墩高增加导致桥梁的横向基频与列车的横向基频接近,50 m 墩高的桥梁列车的晃动角和横向位移最大,增加了脱轨风险;随着墩高从 8 米增加到 50 米,数值模拟得到的脱轨系数平均增加 75%,实验得到的频谱强度平均增加 120%,两个指标呈对数变化。
Influence of pier height on the safety of trains running on high-speed railway bridges during earthquakes
Sudden earthquakes pose a threat to the running safety of trains on high-speed railway bridges, and the stiffness of piers is one of the factors affecting the dynamic response of train-track-bridge system. In this paper, a experiment of a train running on a high-speed railway bridge is performed based on a dynamic experiment system, and the corresponding numerical model is established. The reliability of the numerical model is verified by experiments. Then, the experiment and numerical data are analyzed to reveal the pier height effects on the running safety of trains on bridges. The results show that when the pier height changes, the frequency of the bridge below the 30 m pier height changes greater; the increase of pier height causes the transverse fundamental frequency of the bridge close to that of the train, and the shaking angle and lateral displacement of the train are the largest for bridge with 50 m pier, which increases the risk of derailment; with the pier height increases from 8 m to 50 m, the derailment coefficient obtained by numerical simulations increases by 75% on average, and the spectral intensity obtained by experiments increases by 120% on average, two indicators exhibit logarithmic variation.
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