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Probabilistic analysis of shield-driven tunnel in multiple strata considering stratigraphic uncertainty

机译:考虑地层不确定性的多地层盾构隧道概率分析

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Subsurface formations with multiple soil/rock strata are a common geological condition for shield-driven tunnel (i.e., tunnel constructed using shield-driven machines) construction. The excavation face, under such conditions, often encounters a frequently changing stratigraphic configuration that consists of various lithological units. Furthermore, due to a lack of direct and continuous observations of the subsurface region, it is difficult to predict the stratigraphic profile along the entire excavation path with a high degree of certainty. Such a widely changing and uncertain excavation environment may lead to wide variation in the state of stress and deformation of the tunnel structure along the longitudinal direction. This poses a challenge for design engineers in obtaining accurate performance evaluations or reasonable design outcomes for tunnel construction in subsurface ground with multiple strata. This paper aims to address this challenge by presenting a stochastic geological modeling framework for uncertainty quantification of stratigraphic profiles using sparsely located observation information from geotechnical site investigations. In the proposed modeling framework, the underground soil stratigraphic profile is regarded as a Markov random field with specific energy functions, which is able to describe the inherent anisotropic and non-stationary spatial correlation of lithological units in the subsurface stratigraphic structure. By incorporating the developed stochastic geological modeling framework with a finite element simulation of the tunnel excavation, a probabilistic analysis approach is established to evaluate the effects of stratigraphic uncertainty on the structural performance of a shield-driven tunnel. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有多个土壤/岩石地层的地下地层是盾构驱动的隧道(即,使用盾构驱动的机器建造的隧道)施工的常见地质条件。在这样的条件下,开挖面经常遇到由各种岩性单元组成的频繁变化的地层构造。此外,由于缺乏对地下区域的直接和连续观测,因此很难高度确定地预测沿整个开挖路径的地层剖面。这种广泛变化和不确定的开挖环境可能导致应力状态的变化和沿纵向方向的隧道结构变形。对于设计工程师来说,要获得具有多层结构的地下地下隧道的准确性能评估或合理的设计结果,将构成挑战。本文旨在通过提出一种随机地质建模框架来解决这一挑战,该框架使用岩土工地调查中稀疏定位的观测信息来量化地层剖面。在提出的建模框架中,地下地层剖面被认为是具有特定能量函数的马尔可夫随机场,能够描述地下地层结构中岩性单元的固有各向异性和非平稳空间相关性。通过将已开发的随机地质建模框架与隧道开挖的有限元模拟相结合,建立了一种概率分析方法来评估地层不确定性对盾构驱动隧道结构性能的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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