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The Interplay of Face Support Pressure and Soil Permeability on Face Stability in EPB Tunneling

机译:土压平衡隧道掘进中支护压力和渗透率对支护稳定性的相互作用

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The paper discusses the results of 3D finite element analyses to investigate the effect of face support pressure and soil permeability on face stability conditions in EPB tunnelling. Two main types of face behavior are identified: Undrained conditions ahead of the tunnel face, typically occurring in soils with permeability less than about k=510~(-7)m/s, are shown to be favourable for face stability; analyses show that an applied face pressure comparable with the initial hydrostatic pore pressure is sufficient for adequate face stability, even for soils of relatively low strength. Drained or partially conditions, typically occurring in soils with permeability higher than about k=510~(-6)m/s, show that face stability is strongly dependent on the horizontal effective stress of the muck in the excavation chamber; the presence of even a small effective stress in the muck is very beneficial for face stability conditions and can be a possible explanation of successful EPB tunnelling through relatively permeable soils.
机译:本文讨论了3D有限元分析的结果,以研究在EPB隧道中面支撑压力和土壤渗透率对面稳定条件的影响。确定了两种主要的工作面类型:隧道工作面前面的不排水条件,通常发生在渗透率小于k = 510〜(-7)m / s的土壤中,被证明有利于工作面稳定性。分析表明,即使对于强度相对较低的土壤,所施加的与初始静水孔隙压力相当的表面压力也足以实现足够的表面稳定性。排水或部分条件通常发生在渗透率高于k = 510〜(-6)m / s的土壤中,这表明工作面的稳定性在很大程度上取决于开挖室中渣土的水平有效应力。渣土中甚至很小的有效应力的存在对于面稳定条件是非常有益的,并且可以解释为EPB在相对可渗透的土壤中成功隧道掘进的可能解释。

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