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Field Measurement and Numerical Simulation of Train-Induced Vibration from a Metro Tunnel in Soft Deposits

机译:软矿床地铁隧道火车诱导振动的现场测量和数值模拟

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Train-induced vibration is increasingly attracting people’s concern nowadays. In the coastal areas, many metro tunnels are built in the soft deposits, so the train-induced vibration effect is more serious. Nevertheless, the existing research studies mainly focus on the dynamic responses in the tunnel or on the ground surface while vibration characteristics in the ground are seldom studied. In this paper, a comprehensive field measurement was performed by installing accelerometers in the tunnel and soil layers and on the ground surface to capture the response characteristics of the track-tunnel-ground system. Elastoplastic numerical simulation considering the soil-water coupling was conducted to reveal the responses of acceleration, dynamic displacement, and excess pore water pressure using FE code DBLEAVES. Measurement results indicate that high-frequency contents (500?Hz) attenuate rapidly in the propagation process; the dominant frequency of the rail concentrates in the middle- and high-frequency bands, about 25–400?Hz and 1000–1500?Hz, while the frequencies of the track bed, soil layers, and ground surface drop to below 400, 200, and 100?Hz, respectively. The vertical ground acceleration decreases like an arc in the transverse direction while there is transverse acceleration amplification phenomenon at a distance from the upper haunch and lower haunch of the tunnel. Overall, the area affected by train vibration in the soft deposits is about 30?m away from the metro tunnel. Numerical simulation based on soil-water coupled analysis is feasible to model the vibration characteristics in the soft deposits and confirms that there is acceleration amplification in the ground. Moreover, numerical results indicate that excess pore water pressure can be accumulated during each train vibration, so the train-induced settlement will be a potential problem in the long term for the metro tunnel.
机译:火车诱发的振动越来越多地吸引人们的关注。在沿海地区,许多地铁隧道内置在软矿床中,因此火车诱导的振动效果更严重。然而,现有的研究主要关注隧道或地面上的动态反应,而实地的振动特性很少研究。在本文中,通过在隧道和土层中的加速度计以及地面上安装加速度计来进行综合场测量,以捕获轨道隧道接地系统的响应特性。考虑到土壤 - 水耦合的弹塑性数值模拟,揭示了Fe代码DBLEAVES的加速,动态位移和过量孔隙水压的响应。测量结果表明,高频含量(&500≤Hz)在传播过程中迅速衰减;铁路的主导频率集中在中高频带中,约25-400℃和1000-1500?Hz,而轨道床,土层和地面下降至400,200以下的频率和100?Hz分别。垂直地加速度在横向上的弧形等于弧形的弧度下降,同时距离上部臀部和隧道的下髋和下部躯干横向加速放大现象。总的来说,柔软沉积物中受火车振动影响的区域远远超过地铁隧道。基于土壤 - 水耦合分析的数值模拟是可以在软沉积物中模拟振动特性的可行性,并确认地面上有加速放大。此外,数值结果表明,在每个列车振动期间可以累积过量的孔隙水压,因此火车诱导的结算将是Metro隧道的长期潜在的问题。

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