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首页> 外文期刊>Tunnelling and underground space technology >Remarks on axisymmetric modeling of deep tunnels in argillaceous formations. I: Plastic clays
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Remarks on axisymmetric modeling of deep tunnels in argillaceous formations. I: Plastic clays

机译:关于泥质地层深隧道轴对称建模的评论。 I:塑料黏土

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The paper analyses the response of argillaceous formations to the excavation of deep tunnels, focusing on the role of hydro-mechanical behavior. First, two different types of geologic formations are identified: plastic, soil-like, and stiff, rock-like, argillaceous formations. This paper is specifically concerned with deep tunnels in plastic clays. In particular, the influence of pore pressure changes on the stability of the excavation and on the loading of the support systems is investigated. The state of stress and defor mation is analyzed in the short- and long-term, by applying analytical and numerical solutions to the ide alized situation of an axisymmetric tunnel. General remarks on the influence of hydro-mechanical coupling, artificial boundary conditions and lining permeability are presented. Theoretical predictions are compared with measurements made in some tunnels excavated in the Boom clay formation at Mol (Belgium). The suggestions provided in the paper may contribute to refining practical design approaches, hence filling the gap between the application of advanced hydro-mechanical models and conventional uncoupled elasto-plastic models. In a companion paper, the behavior of rock-like materials is considered. In particular, the effect of scaly structure, typical of many deep argillaceous formations, and fissure open ing around the tunnel walls is examined. Results of conventional and novel models, purposely formulated to analyze such situations, are compared.
机译:本文分析了泥质岩层对深部隧道开挖的响应,重点是水力力学行为的作用。首先,确定了两种不同类型的地质构造:塑性的,土壤状的和坚硬的,岩石状的泥质地层。本文专门涉及塑料黏土中的深层隧道。尤其是,研究了孔隙压力变化对开挖稳定性和支撑系统荷载的影响。通过对轴对称隧道的理想状态应用解析和数值解,可以分析短期和长期的应力和变形状态。介绍了有关水力耦合,人工边界条件和衬砌渗透性影响的一般性评论。将理论预测与在Mol(比利时)的Boom粘土地层中开挖的一些隧道中进行的测量结果进行了比较。本文提供的建议可能有助于改进实用的设计方法,从而填补了先进的流体力学模型与传统的非耦合弹塑性模型之间的空白。在随附的论文中,考虑了岩石材料的行为。特别是,检查了鳞片状结构(许多深层泥质地层的典型特征)和隧道壁周围裂缝的影响。比较了常规和新颖模型的结果,这些模型是专门为分析这种情况而制定的。

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