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Critical Velocity of High-Speed Train Running on Soft Soil and Induced Dynamic Soil Response

机译:软土地区高速火车的临界速度,诱导动态土壤反应

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The determining of the critical speed under train operation remains difficult due to the complex properties of the track, embankment and ground. In this paper, a dynamic analysis model comprising track, embankment and layered ground was proposed based on the two-and-half-dimensional (2.5D) finite elements combining with thin-layer elements to predict vibrations generated by train moving loads. The track structure is modeled as an Euler-Bernoulli beam resting on embankment. The train is treated as a series of moving axle loads;; the embankment and ground are modeled by the 2.5D finite elements. The dynamic responses of the track structure and the ground under moving axle loads at various speeds are presented. The results show that the dynamic response of ground induced by moving constant loads is mostly dominated by train speed and the stiffness of the topsoil. The critical speed of a train moving on an embankment is higher than the Rayleigh wave velocity of the underlying soil, and softer soils results in lower overall critical speed of the system.
机译:由于轨道,堤防和地面的复杂性质,列车操作下的临界速度仍然困难。在本文中,基于与薄层元件组合的二维(2.5D)有限元件提出了一种包括轨道,堤坝和分层地面的动态分析模型,以预测训练移动负载产生的振动。轨道结构被建模为距离堤岸的Euler-Bernoulli梁。火车被视为一系列移动的轴载;堤防和地面由2.5D有限元建模。呈现了在各种速度下移动轴载下的轨道结构和地面的动态响应。结果表明,通过移动恒定载荷引起的地面的动态响应主要由火车速度和表土的刚度占主导地位。在路堤上移动的火车的临界速度高于下面的土壤的瑞利波速度,并且较软的土壤导致系统的整体临界速度较低。

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