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Prediction of roof supporting pressure for shallow tunnels in layered soils incorporating the effect of pore water pressure

机译:考虑孔隙水压力影响的分层土壤浅埋隧道顶板支护压力预测

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摘要

In this study, we propose a method for predicting the supporting pressure required for shallow tunnels in layered soils, based on a curved roof collapse mechanism with multi-failure surfaces. In this method, the effect of the number and thickness of soil layers, pore water pressure, arbitrary roof profile, and ground additional load is considered simultaneously. A nonlinear power-law failure criterion is employed to describe the failure characteristics of the roof soils. The internal energy dissipation rate and the work rates produced by external forces are obtained based on the associated flow rule and plasticity potential theory. The analytical expressions of the required supporting pressure and roof collapse surfaces are obtained with the upper bound method. Furtherly, a shallow rectangular tunnel in two soil layers is selected for parametric investigation. The change laws of the required supporting pressure and collapse curves under varying parameters are obtained. Furthermore, the corresponding engineering recommendations are given, which may potentially provide references for the support design and construction of shallow tunnels in layered strata.
机译:在这项研究中,我们提出了一种基于具有多个破坏面的弯曲屋顶坍塌机制来预测层状土壤中浅层隧道所需的支撑压力的方法。在这种方法中,同时考虑了土壤层的数量和厚度,孔隙水压力,任意屋顶轮廓和地面附加载荷的影响。采用非线性幂律破坏准则来描述屋顶土的破坏特征。根据相关的流动规则和可塑性势能理论,得出内部能量耗散率和外力产生的工作率。使用上限方法获得所需的支撑压力和屋顶坍塌表面的解析表达式。此外,选择两层土壤中的浅矩形隧道进行参数研究。获得了在不同参数下所需的支撑压力和坍塌曲线的变化规律。此外,给出了相应的工程建议,可为分层地层中浅层隧道的支护设计和施工提供参考。

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