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Three-dimensional face stability analysis of shallow tunnels using numerical limit analysis and material point method

机译:使用数值极限分析和材料点法的浅隧道三维面稳定性分析

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In this work, the collapse conditions of shallow tunnel faces are studied using the Numerical Limit Analysis (NLA) and the Material Point Method (MPM). A particular form (based on a mixed representation of velocities and stresses) of the lower bound formulation of numerical limit analysis was used. The solution using NLA is evaluated considering finite elements for the volume discretization in conjunction with the second order cone and semidefinite programming methodologies. Drucker-Prager and Mohr-Coulomb failure criteria have been used. In the case of MPM, the continuum media is discretized by a set of material points which store all the relevant properties and variables such as mass, stress, velocity, and energy. The objective of this paper is to evaluate the characteristics of both methods when applied to the determination of the tunnel face stability conditions of shallow tunnels, in particular to the determination of failure mechanisms and run-out analysis of the failed mass. Results obtained from experiments on a small-scale model (Sterpi et al., 1996) are used as a reference for the study. The results obtained showed that both MPM and NLA can predict the global failure mechanism and the minimum tunnel face pressure required for stability.
机译:在这项工作中,使用数值极限分析(NLA)和材料点法(MPM)研究了浅隧道面的塌陷条件。使用特定形式(基于速度混合的速度表示和速度和应力)的数值限制分析的下限分析。考虑与二阶锥和半馏分编程方法结合的体积离散化的有限元件,评估使用NLA的解决方案。已使用Drucker-PRAGER和MOHR-CULOMB故障标准。在MPM的情况下,连续介质由一组材料点离散化,该材料点存储所有相关性质和变量,例如质量,应力,速度和能量。本文的目的是当应用于浅隧道的隧道面稳定性条件的确定时,评估两种方法的特征,特别是测定失效机构和失败质量的径流分析。从小规模模型(Sterpi等,1996)的实验获得的结果被用作研究的参考。获得的结果表明,MPM和NLA既可以预测全球失效机理和稳定性所需要的最小隧道面压力。

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