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Effect of the seepage flow on the face stability of a shield tunnel

机译:渗流流动对盾构隧道面稳定性的影响

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摘要

To assess the face stability of a shield tunnel excavated in saturated soils under steady seepage flow condition, both numerical simulation and theoretical analysis are carried out. Based on the characteristics of the hydraulic head distribution, an analytical solution for the hydraulic head distribution ahead of tunnel face in the homogeneous and isotropic ground is proposed. And based on the upper bound theorem of the limit analysis, the analytical head equation is introduced into the 3D rotational rigid block collapse mechanism to take into account of the effect of the seepage flow. The comparisons show that the presented method agrees well with the numerical analysis and other existing studies. Finally, an analytical solution for the hydraulic head distribution ahead of tunnel face considering the permeability anisotropy is also presented and discussed. It is suggested that the neglect on the permeability anisotropy of soils may lead to an overestimate on the required face pressure.
机译:为了在稳定的渗流条件下评估在饱和土中挖掘出饱和土的屏蔽隧道的面部稳定性,进行了数值模拟和理论分析。基于液压头分布的特点,提出了均匀和各向同性地区隧道面前液压头分布的分析解决方案。并基于极限分析的上限定理,将分析头方程引入到3D旋转刚性块塌陷机构中,以考虑渗流流的效果。比较表明,呈现的方法与数值分析和其他现有研究一致。最后,还提出并讨论了考虑渗透性各向异性的隧道面前液压头分配的分析解决方案。建议忽视土壤的渗透性各向异性可能导致对所需的面部压力高估。

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