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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Upper Bound Analysis for Collapse Failure of Shield Tunnel Face Excavated in Unsaturated Soils Considering Steady Vertical Flow
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Upper Bound Analysis for Collapse Failure of Shield Tunnel Face Excavated in Unsaturated Soils Considering Steady Vertical Flow

机译:考虑稳态垂直流动挖掘屏蔽隧道面裂缝失效的上限分析

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摘要

Natural soils are mostly in an unsaturated state and the corresponding mechanical properties differ significantly from a saturated one. In traditional stability analysis for a shield tunnel face, the soil mass is typically assumed to be dry or saturated for convenience of analysis. In this work, based on the upper bound theorem of classical plasticity theory and the log-spiral failure mechanism, face stability of the shield tunnel excavated in unsaturated soils under vertical steady flow is studied. The profile of shear strength is determined by virtues of the unified effective stress approach and the analytical solution of matric suction under unsaturated steady flow. On this basis, the analytical expression for the supporting pressure is deduced and the sequential quadratic programming is employed to search for the optimal upper bound solution. Through parametric analysis it is found the fitting parameters of SWCC and the groundwater level affect the supporting pressure notably. Besides, the relevant influence of vertical discharge is also significant when clayey soils are concerned.
机译:天然土壤主要处于不饱和状态,并且相应的机械性能与饱和的机械性能显着不同。在传统的盾构隧道面的稳定性分析中,为了方便分析,通常假设土壤质量是干燥或饱和的。在这项工作中,基于经典塑性理论的上限定理和对数螺旋故障机构,研究了在垂直稳定流动下在不饱和土中挖掘的屏蔽隧道的面部稳定性。剪切强度的轮廓由统一的有效应力方法和不饱和稳定流动下的测力的分析溶液确定。在此基础上,推导出支撑压力的分析表达,并且采用顺序二次编程来搜索最佳的上限解决方案。通过参数分析,发现SWCC的拟合参数和地下水位显着影响支撑压力。此外,当粘土土壤涉及时,垂直放电的相关影响也很显着。

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