Train-Induced Vibration Prediction and Control of a Metro Depot and Over-Track Buildings

Author:

Wang Tingting12,Jiang Bolong3,Sun Xiaojing12

Affiliation:

1. Key Laboratory of Urban Underground Engineering of Ministry of Education, Beijing Jiaotong University, Beijing 100044, China

2. School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China

3. National Engineering Research Center for Digital Construction and Evaluation Technology of Urban Rail Transit, China Railway Design Corporation, Tianjin 300308, China

Abstract

To predict and control the train-induced vibration in depot buildings, a case study of the depot of Tianjin Metro, Line 5, was conducted. The platform of the depot has been constructed and is in use, and the construction of over-track buildings has not been completed. Firstly, an in situ measurement was performed to obtain the train loads and validate the numerical model. Secondly, a finite element model of the track–soil–depot structure was established. The train was simplified as a series of two spring-mass models and the train load was simulated using the measured rail acceleration. The calculated results were validated by the measurement data. To predict the vibration responses of the over-track building to be built, a sub-system of the over-track building was added to the numerical model. Finally, the vibration control effect of vibration isolation bearings was discussed. The results indicate that vibrations exceeded guideline limits without mitigation measures in some rooms of the over-track building. The dominant frequency of the building floors is 31.5 Hz. Vibration isolation bearings effectively mitigated the vibrations, and the IL reached approximately 7–15 dB at about 31.5 Hz.

Funder

Tianjin Science and Technology Plan Project

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference39 articles.

1. Smart Growth and the Transportation-Land Use Connection: What Does the Research Tell Us?;Handy;Int. Reg. Sci. Rev.,2005

2. A frequency-domain formulation for predicting ground-borne vibration induced by underground train on curved track;Liu;J. Sound Vib.,2023

3. The use of sub-modelling technique to calculate vibration in buildings from underground railways;Hussein;Proc. Inst. Mech. Eng. Part F J. Rail Rapid Transit,2015

4. Building response due to ground vibration—Simple prediction model based on experience with detailed models and measurements;Auersch;Int. J. Acoust. Vib.,2010

5. Vibrations inside buildings due to subway railway traffic. Experimental validation of a comprehensive prediction model;Lopes;Sci. Total Environ.,2016

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