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Field monitoring on the train-induced vibration response of track structure in the Beiluhe permafrost region along Qinghai-Tibet railway in China

机译:青藏铁路北麓河多年冻土区轨道结构的列车振动响应现场监测

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摘要

Analyses of characteristics of vibration response of track structure from train traffic and its attenuation laws, based on the field monitoring of the vibration acceleration response of rail, sleeper, and embankment at the Beiluhe permafrost testing section along the Qinghai-Tibet railway in China, are performed in this paper. The reasonable fitting formula of attenuation relationship of embankment vibration is put forward in a negative exponential function form. The quantitative understanding of the vibration property is obtained according to the statistic of the two well-defined eigenvalues of vibration acceleration response, as well as the analysis of the acceleration time histories and the corresponding frequency spectra. The results suggest that: the effect of rail gap on the maximal vertical vibration response of rail is not evident; vibration response of sleeper near the rail gap is obviously larger than that of other sleepers, especially having intensive shock pulse, and the maximum is more than three times that of the vibration response of the sleeper lying in the very middle of the two rail gaps from one compartment passing by; the rail vibration energy concentrates within 10 Hz, and the rail predominant frequencies mainly correlate with train speed and bogie spacing; the dominant frequencies of the embankment vibration, varying from 40 to 70 Hz for the embankment shoulder and reducing with the distance increasing from the track, are influenced chiefly by train speed and sleeper spacing. The results mentioned above have important significance for rational cognition of vibration response characteristics of track structure at permafrost site, and moreover for the dynamic stability evaluation for the long-term operation of the Qinghai-Tibet railway. Meanwhile, the investigation provides basic data for the further research on the rail transit dynamics and the improvement of railroading criterion in cold regions.
机译:基于中国青藏铁路北麓河多年冻土试验段铁路,轨枕和路堤振动加速度响应的现场监测,分析了列车运行对轨道结构的振动响应特征及其衰减规律,分别为在本文中执行。以负指数函数形式提出了路堤振动衰减关系的合理拟合公式。根据振动加速度响应的两个明确定义的特征值的统计量,以及对加速时间历史和相应频谱的分析,可以获得对振动特性的定量理解。结果表明:钢轨间隙对钢轨最大垂直振动响应的影响不明显。轨距附近的轨枕的振动响应明显大于其他轨枕,尤其是具有强烈的冲击脉冲,最大值是位于两个轨距中间的轨枕振动响应的三倍以上。一个车厢经过轨道振动能量集中在10 Hz以内,轨道主要频率主要与列车速度和转向架间距有关。路堤振动的主导频率,从路肩的40Hz到70Hz不等,并且随着距轨道距离的增加而减小,主要受列车速度和轨枕间距的影响。上述结果对合理认识多年冻土区轨道结构的振动响应特性具有重要意义,并且对于青藏铁路长期运行的动力稳定性评价具有重要意义。同时,该研究为进一步研究寒冷地区的轨道交通动力学和改善铁路标准提供了基础数据。

著录项

  • 来源
    《Cold regions science and technology》 |2010年第1期|75-83|共9页
  • 作者单位

    Centre of Subgrade and Prevention Engineering, Harbin Institute of Technology, Heilongjiang, Harbin 150090, China State Key Laboratory of Frozen Soils Engineering, Chinese Academy of Science, Gansu, Lanzhou 730000, China;

    Centre of Subgrade and Prevention Engineering, Harbin Institute of Technology, Heilongjiang, Harbin 150090, China;

    Centre of Subgrade and Prevention Engineering, Harbin Institute of Technology, Heilongjiang, Harbin 150090, China Urban and Rural Construction College, Sichuan Agricultural University, Sichuan, Dujiangyan 611830, China State Key Laboratory of Frozen Soils Engineering, Chinese Academy of Science, Gansu, Lanzhou 730000, China;

    Centre of Subgrade and Prevention Engineering, Harbin Institute of Technology, Heilongjiang, Harbin 150090, China;

    Centre of Subgrade and Prevention Engineering, Harbin Institute of Technology, Heilongjiang, Harbin 150090, China;

    Urban and Rural Construction College, Sichuan Agricultural University, Sichuan, Dujiangyan 611830, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    spectrum characteristics; time histories; track structure; field monitoring; permafrost region; qinghai-Tibet railway;

    机译:频谱特性时间历史;轨道结构;现场监测;多年冻土区青藏铁路;

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