结构工程
码头
振动
火车
桥(图论)
工程类
大梁
脱轨
梁桥
磁道(磁盘驱动器)
蠕动
结算(财务)
计算机科学
声学
机械工程
材料科学
物理
付款
万维网
内科学
复合材料
医学
地图学
地理
作者
Hongye Gou,Longcheng Yang,Zhixiang Mo,Wei Guo,Xiaoyu Shi,Yi Bao
标识
DOI:10.1142/s0219455419501116
摘要
Operation safety of high-speed trains is dependent on their vibration characteristics, which vary with bridge deformation. This paper studies the influence of bridge pier settlement and girder creep camber, which are two typical types of long-term bridge deformation, on the vibration of high-speed trains. To this end, an analytical approach is presented to link the bridge deformation with railway track deformation; the track deformation is used to analyze the vibration of the CRH2 high-speed train in China. The vibration analysis results are validated using the in-situ measurement data. The present study shows that bridge pier settlement greatly affects the vertical acceleration, derailment coefficient and wheel unloading rate of the high-speed train; incorporating bridge girder camber aggravates the vibration of the train–bridge system. The threshold of bridge pier settlement is suggested to be 11.1[Formula: see text]mm for trains moving at 350[Formula: see text]km/h with regard to the code-specified vibration limit. This study has significant implications for the design and operation of high-speed railways.
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