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地铁轮轨耦合不平顺激励对轨道振动影响分析
引用本文:马蒙,李明航,谭新宇,曲翔宇,张厚贵. 地铁轮轨耦合不平顺激励对轨道振动影响分析[J]. 工程力学, 2021, 38(5): 191-198. DOI: 10.6052/j.issn.1000-4750.2020.06.0421
作者姓名:马蒙  李明航  谭新宇  曲翔宇  张厚贵
作者单位:北京交通大学土木建筑工程学院,北京 100044;北京市劳动保护科学研究所, 北京 100054
基金项目:国家自然科学基金项目(51978043)
摘    要:轮轨动态输入激励直接影响车辆-轨道耦合模型的计算结果.目前在地铁列车环境振动振源研究中,大多只考虑了轨道不平顺的激励而忽略了车轮不圆顺的影响.为了构建地铁轮轨耦合不平顺激励、综合分析轨道不平顺以及车轮、钢轨的磨耗状态对轨道动力响应的影响,对一列地铁列车进行了车轮不圆顺的现场测试,同时对一段区间隧道内的轨道不平顺和钢轨粗...

关 键 词:地铁  车轨耦合动力学  功率谱密度  车轮不圆顺  轨道不平顺  钢轨粗糙度
收稿时间:2020-06-30

INFLUENCE ANALYSIS ON TRACK VIBRATION DUE TO COUPLED IRREGULARITY EXCITATION OF METRO WHEEL-TRACK
Affiliation:1.School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China2.Beijing Institute of Labor Protection Science, Beijing 100054, China
Abstract:The input wheel-track dynamic excitation directly affects the calculation results of vehicle-track coupled models. Nowadays, in the research of metro-train induced environmental vibrations, only the track irregularity excitation was considered but the effect of wheel roughness was ignored. To establish a metro wheel-track coupled excitation and to comprehensively analyze the influences of track irregularity, the out-of-round wheels of a metro train were measured, and the track irregularities and rail roughness in a metro running tunnel were also measured. Based on the vehicle-track coupled analytical model in the frequency domain, the track dynamic responses were calculated, and the influences on the results of different wheel-track simulations were compared. Furthermore, the rail vibrations were measured in the same metro running tunnel, which were used to validate the calculation accuracy by different simulations. The research results indicate that: the vibration responses will be underestimated in typical frequency band domination by wheel irregularities using the US irregularities power spectrum density (PSD) and Sato irregularities PSD, and accordingly, it is difficult to obtain the accurate vibration responses between 8 Hz and 200 Hz. The wheel-rail coupled irregularity PSD obtained by energy superposition can reflect the complete wheel-rail excitation information, which can be used to obtain the accurate simulation results between 8 Hz and 200 Hz.
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