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Tunnel face stability in cohesion-frictional soils considering the soil arching effect by improved failure models

机译:考虑改进拱形模型的土拱效应的黏性摩擦土隧道工作面稳定性

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摘要

To better assess the stability of tunnel faces in cohesion-frictional soils, tunnel face stability was investigated considering the soil arching effect in this study. An improved 3D rotational failure model based on the limit analysis method and an improved wedge-prism model based on the limit equilibrium method were proposed. Simultaneously, the lateral stress ratioKswas improved to reflect the soil arching effect. The support pressures obtained by the two proposed models were validated by the numerical results and existing works. Finally, the effects of the geometrical and geotechnical parameters and loading conditions on the tunnel face stability were assessed.
机译:为了更好地评估粘性摩擦土壤中的隧道工作面稳定性,本研究考虑了土拱效应对隧道工作面的稳定性进行了研究。提出了一种基于极限分析方法的改进的3D旋转失效模型和基于极限平衡方法的改进的楔形棱镜模型。同时,提高了侧向应力比Ks,以反映土拱效应。数值结果和现有工作验证了两个提出的模型获得的支撑压力。最后,评估了几何和岩土参数以及荷载条件对隧道面板稳定性的影响。

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