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Numerical modelling of centrifuge dynamic tests of circular tunnels in dry sand

机译:干沙圆形隧道离心机动力试验数值模拟

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摘要

This paper describes the numerical simulation of two dynamic centrifuge tests on reduced scale models ofudshallow tunnels in dry sand, carried out using both an advanced bounding surface plasticity constitutive soiludmodel and a simple Mohr–Coulomb elastic-perfectly plastic model with embedded nonlinear and hysteretic behaviour. The predictive capabilities of the two constitutive models are assessed by comparing numerical predictionsudand experimental data in terms of accelerations at several positions in the model, and bending moment andudhoop forces in the lining. Computed and recorded accelerations match well, and a quite good agreement is achieved also in terms of dynamic bending moments in the lining, while numerical and experimental values of the hoop force differ significantly with one another. The influence of the contact assumption between the tunnel and the soil is investigated by comparing the experimental data and the numerical results obtained with different interface conditions with the analytical solutions. The overall performance of the two models is very similar indicating that at least for dry sand, where shear-volumetric coupling is less relevant, even a simple model can provide an adequateudrepresentation of soil behaviour under dynamic conditions
机译:本文描述了在干砂中浅层隧道浅层模型中进行的两个动态离心试验的数值模拟,该模型使用先进的边界表面可塑性本构土 udmodel和具有嵌入式非线性的简单Mohr-Coulomb弹性完全塑性模型进行和歇斯底里的行为。通过比较数值预测 ud和实验数据,根据模型中几个位置的加速度以及衬砌中的弯矩和 uhoop力,评估了两个本构模型的预测能力。计算和记录的加速度匹配得很好,并且在衬砌中的动态弯曲力矩方面也达到了很好的一致性,而环向力的数值和实验值彼此之间存在显着差异。通过比较实验数据和在不同界面条件下获得的数值结果与解析解,研究了隧道与土壤之间的接触假设的影响。两种模型的整体性能非常相似,这表明至少对于干砂而言,剪力-体积耦合的相关性较小,即使是简单的模型也可以提供动态条件下土壤行为的充分表示。

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