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Assessment Spectra for Structures subject to Passing Underground Trains

机译:经过地下列车的结构评估光谱

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摘要

Underground trains passing below structures may produce vibrations harming occupants and nonstructural elements, though they do not usually result in structural damage. This is a problem of more importance when assessing buildings such as libraries, hospitals, laboratories, museums, etc. To prepare simple tools to fulfill design needs, in this paper assessment spectra for various underground trains moving with different velocities are calculated. Using these spectra, without resorting to the time consuming and costly analysis of a tunnel-soil system under moving loads, the maximum structural responses can be calculated rapidly. To make this end, the soil-tunnel interaction is modeled using a 3D finite difference scheme under the standard moving train loads. The dynamic analysis of such a system results in the ground surface vibration time histories at different distances from the tunnel axis. Then the maximum values of velocity responses are calculated for an SDF dynamical system. The above calculations are accomplished for different train velocities, tunnel depths, distances from tunnel, and soil types, and are presented as assessment velocity spectra.
机译:通过下面结构地铁列车可能会产生的振动伤害乘员和非结构的元件,尽管它们通常不会导致结构损坏。评估建筑如图书馆,医院,实验室,博物馆等准备简单的工具,以满足设计需求时,在本文中评估光谱不同的地铁列车与计算不同的速度运动,这是更为重要的问题。使用这些光谱,而无需移动负载下诉诸隧道土系统的耗时和昂贵的分析,最大结构响应,可以迅速地计算。为了使为此,土壤隧道相互作用使用标准移动的列车载荷下一个三维有限差分方法建模。的这样的系统导致在从隧道轴线不同距离处的地表振动时间历程的动态分析。然后的速度响应的最大值被计算为一个SDF动力系统。上述计算完成对不同列车速度,隧道的深度,从隧道距离,和土壤类型,并表示为评估速度谱。

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