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Numerical analysis of tunneling in slates with anisotropic time-dependent behavior

机译:各向异性时变行为的板岩开挖数值分析

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Slate is a metamorphic rock often contains a dense foliated texture called slaty cleavages or schistosities. The ease of split along the schistosities weakens the slate and its resistance to weathering and erosion. For the tunnel excavation in slate formations, it is common to observe anisotropic deformation; in addition, the deformation caused by stress release also shows time-dependent behavior. Hence, anisotropic and time-dependent behaviors must be taken into account to more properly estimate the deformation of tunnel excavation in slate formation. In this paper, the computer software FLAC with the ubiquitous joint (UBI) model and the Burger-creep viscoplastic (CVISC) model was adopted for the analysis. To more efficiently obtain relevant parameters of those models, back calculations were performed by the automatic iterative tool Quick Macro. Coupling these two models, the new hybrid UBI/BUR model was developed and implemented as a UDM program, which can be applied for the FLAC analyses. The new model was calibrated by the monitoring data from a slate tunnel excavation project, i.e., the Wanta-Sunglin Project in Taiwan, then applied for detailed analyses. The results indicate that the hybrid model developed in this study is better than the conventional models, and can be used for the simulation of tunnel excavation in anisotropic time-dependent slate formations.
机译:板岩是一种变质岩,通常含有致密的叶状质地,称为板岩解理或片岩性。沿水准性的易裂性削弱了板岩及其对风化和侵蚀的抵抗力。对于板岩构造中的隧道开挖,通常会观察到各向异性变形。此外,由应力释放引起的变形也表现出随时间变化的行为。因此,必须考虑各向异性和随时间变化的行为,以便更适当地估计板岩形成中隧道开挖的变形。本文采用计算机软件FLAC,采用了泛滥关节(UBI)模型和汉堡-蠕变粘塑性(CVISC)模型。为了更有效地获得那些模型的相关参数,自动迭代工具Quick Macro进行了反向计算。结合这两个模型,新的UBI / BUR混合模型被开发并实现为UDM程序,可用于FLAC分析。新模型是根据来自板岩隧道开挖项目(即台湾的万通-松林项目)的监测数据进行校准的,然后用于详细分析。结果表明,本研究开发的混合模型优于常规模型,可用于各向异性时变板岩地层中隧道开挖的模拟。

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