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首页> 外文期刊>Geomechanics and engineering >Three-dimensional finite element modelling and dynamic response analysis of track-embankment-ground system subjected to high-speed train moving loads
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Three-dimensional finite element modelling and dynamic response analysis of track-embankment-ground system subjected to high-speed train moving loads

机译:高速列车移动载荷的轨道路堤 - 地面系统的三维有限元建模与动态响应分析

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摘要

A finite element approach is presented to examine ground vibration characteristics under various moving loads in a homogeneous half-space. Four loading modes including single load, double load, four-load, and twenty-load were simulated in a finite element analysis to observe their influence on ground vibrations. Four load moving speeds of 60, 80, 100, and 120 m/s were adopted to investigate the influence of train speed to the ground vibrations. The results demonstrated that the loading mode in a finite element analysis is reliable for train-induced vibration simulations. Additionally, a three-dimensional finite element model (3D FEM) was developed to investigate the dynamic responses of a track-ballast-embankment-ground system subjected to moving loads induced by high-speed trains. Results showed that vibration attenuations and breaks exist in the simulated wave fronts transiting through different medium materials. These tendencies are a result of the difference in the Rayleigh wave speeds of the medium materials relative to the speed of the moving train. The vibration waves induced by train loading were greatly influenced by the weakening effect of sloping surfaces on the ballast and embankment. Moreover, these tendencies were significant when the vibration waves are at medium and high frequency levels. The vibration waves reflected by the sloping surface were trapped and dissipated within the track-ballast-embankment-ground system. Thus, the vibration amplitude outside the embankment was significantly reduced.
机译:提出了有限元方法,以在均匀的半空间中的各种移动载荷下检查地面振动特性。在有限元分析中模拟了四种加载模式,包括单载荷,双负荷,四负载和二十负载,以观察它们对地面振动的影响。采用四个负载移动速度为60,80,100和120米/秒来研究列车速度对地面振动的影响。结果表明,有限元分析中的装载模式可用于列车诱导的振动模拟。另外,开发了一种三维有限元模型(3D FEM)以研究经受高速列车诱导的移动载荷的轨道镇流器 - 路堤地系统的动态响应。结果表明,通过不同介质材料的模拟波前振动衰减和断裂存在。这些趋势是介质材料相对于移动列车速度的瑞利波速度差异的结果。火车装载引起的振动波受到倾斜表面在镇流器和堤坝上的弱化效果的影响。此外,当振动波处于中高频水平时,这些趋势是显着的。由倾斜表面反射的振动波被捕获并在轨道镇流器 - 路堤地面系统内散发。因此,堤防外部的振动幅度显着降低。

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