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Dynamic Responses of a Metro Train-Bridge System under Train-Braking: Field Measurements and Data Analysis

机译:列车制动下地铁列车-桥梁系统的动力响应:现场测量和数据分析

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摘要

This paper focuses on the dynamic responses of a metro train–bridge system under train-braking. Experiments were performed on the elevated Metro Line 21 of Guangzhou (China). A continuous, three-span, rigid-frame bridge (42 m + 65 m + 42 m) and a standard B-type metro train were selected. The acceleration signals were measured at the center-points of the main span and one side-span, and the acceleration signals of the car body and the bogie frame were measured simultaneously. The train–bridge system’s vibration characteristics and any correlations with time and frequency were investigated. The Choi–Williams distribution method and wavelet coherence were introduced to analyze the obtained acceleration signals of the metro train–bridge system. The results showed that the Choi–Williams distribution provided a more explicit understanding of the time–frequency domain. The correlations between different parts of the bridge and the train–bridge system under braking conditions were revealed. The present study provides a series of measured dynamic responses of the metro train–bridge system under train-braking, which could be used as a reference in further investigations.
机译:本文着重于地铁在列车制动下的动力响应。实验在中国广州的高架地铁21号线上进行。选择了连续的三跨刚性框架桥(42 m + 65 m + 42 m)和标准的B型地铁列车。在主跨度和一侧跨度的中心点测量加速度信号,同时测量车身和转向架框架的加速度信号。研究了火车-桥梁系统的振动特性以及与时间和频率的任何相关性。介绍了Choi-Williams分布方法和小波相干性,以分析获得的地铁列车-桥梁系统的加速度信号。结果表明,Choi–Williams分布对时频域提供了更明确的理解。揭示了在制动条件下桥梁不同部分与火车桥系统之间的相关性。本研究提供了一系列地铁列车制动条件下测得的地铁-桥梁系统动力响应,可作为进一步研究的参考。

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