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首页> 外文期刊>Revista de la construccion >Application of an advanced soil constitutive model to the study of railway vibrations in tunnels through 2D numerical models: a real case in Madrid (Spain)
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Application of an advanced soil constitutive model to the study of railway vibrations in tunnels through 2D numerical models: a real case in Madrid (Spain)

机译:先进的土壤本构模型在通过2D数值模型研究隧道中的铁路振动中的应用:马德里(西班牙)的真实案例

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In the last few years, different numerical models for the study of railway vibrations in tunnels have been developed. Virtually all of them assume an elastic and linear behaviour of the soil. In this article the influence of soil constitutive model is investigated, comparing an "advanced" model of the soil called Hardening Soil model with small-strain stiffness (HSsmall) and the Mohr-Coulomb (MC) model. Moreover, the influence of soil stiffness has been studied when this is considered in the range of small strains (E50) or in the range of very small strains (E0). These models have been applied to a real case through a 2D finite element model formulated in the time domain, where it is concluded that both soil stiffness and the amplitude of the maximum tangential strain are the most important geotechnical parameters when estimating the deformational parameters and the constitutive models of the soil most adequate for the study of railway vibrations in tunnels.
机译:在最近几年中,已经开发出用于研究隧道中的铁路振动的不同数值模型。实际上,所有这些方法都假设土壤具有弹性和线性行为。在本文中,研究了土壤本构模型的影响,比较了具有小应变刚度(HSsmall)的“硬化土壤”模型和Mohr-Coulomb(MC)模型的“高级”土壤模型。此外,在小应变(E50)或非常小应变(E0)的范围内考虑土壤刚度的影响时,已经进行了研究。这些模型已通过在时域中建立的二维有限元模型应用于实际情况,得出的结论是,在估算变形参数和变形时,土的刚度和最大切向应变的振幅都是最重要的岩土参数。最适合研究隧道中铁路振动的土壤本构模型。

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