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首页> 外文期刊>International journal of geomechanics >Face Stability Analysis of EPB Shield Tunnels in Dry Granular Soils Considering Nonuniform Chamber Pressure and a Dynamic Excavation Process
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Face Stability Analysis of EPB Shield Tunnels in Dry Granular Soils Considering Nonuniform Chamber Pressure and a Dynamic Excavation Process

机译:考虑不均匀腔室压力和动态挖掘过程,对干燥粒状土壤EPB屏蔽隧道的面部稳定性分析及动态挖掘工艺

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摘要

The support pressure at the tunnel face of earth pressure balance (EPB) shield machines is usually assumed to be uniform from the crown to the invert, which is a notable simplification of reality. In this study, the effects of nonuniform soil pressure in the chamber and the dynamic shield excavation process on the face stability are investigated using a three-dimensional (3D) discrete element method (DEM) model. The behavior of the excavation face subjected to different overburden depths and ground conditions is assessed and also compared with previous research. The results show that the limit face pressure and failure zone is overestimated without considering the nonuniform soil pressure in the chamber. When considering the nonuniform soil pressure in the chamber, a partial failure mode is observed in granular soil that is characterized by flow originating at the upper part of the excavation chamber and limited flow ahead of the face. This effect has a nonnegligible influence on face failure mode and the arching effect, especially near the invert, which is in contrast with the findings associated with global failure modes considered in previous studies.
机译:地球压力平衡(EPB)屏蔽机的隧道面上的支撑压力通常被认为是从冠部到倒置的均匀,这是现实的显着简化。在该研究中,使用三维(3D)离散元件(DEM)模型研究了腔室中的非均匀土壤压力和动态屏蔽开挖过程对面部稳定性的影响。对不同覆盖层深度和地面条件进行了挖掘面的行为,并与先前的研究相比。结果表明,在不考虑腔室中的非均匀土压力的情况下高估极限面压和故障区。当考虑腔室中的不均匀的土壤压力时,在颗粒土中观察到部分失效模式,其特征在于源自挖掘室的上部的流动以及面部前方的有限流动。这种效果对面部故障模式和拱形效应具有非阻资格的影响,特别是在逆变附近,这与与先前研究中考虑的全局失败模式相关的结果相反。

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