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Hydro-mechanical modelling and analysis of multi-stage tunnel excavations using a smoothed excavation method

机译:使用平滑的挖掘方法进行水力机械建模与多级隧道挖掘分析

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摘要

The main objective of this article is to provide a general numerical approach for the hydro-mechanical (HM) modelling of tunnels excavated in saturated rock masses exhibiting plastic behaviour, considering a multi-stage excavation process. First, a new excavation method has been proposed and implemented in the software CODE_BRIGHT, based on the finite element method. In this method, the stresses in the excavation elements are reduced smoothly. As verification, the principle of uniqueness has been tested for multi-stage excavation. Then, numerical studies have been carried out to verify the advantages of the proposed excavation method in the numerical calculation, showing that the proposed method improves computational efficiency and mitigates convergence issues. Hence, this method can solve the usual numerical difficulties related to excavation problems and, therefore, it allows a more in-depth analysis of the HM behaviour of rock masses during tunnel excavation. Moreover, the results obtained in CODE_BRIGHT using the proposed method are compared with existing solutions for longitudinal deformation profiles (LDP), including elastic-plastic solutions for mechanical problems and elastic solutions for HM problems. Furthermore, this article presents the HM modelling of tunnels excavated in saturated rock masses, analysing the sensitivity of the LDP to the HM conditions and to the rock mass quality. Finally, based on a large amount of data obtained from numerical simulations, empirical solutions for the LDP of tunnels excavated in saturated rock masses -in a steady-state HM framework- have been obtained by fitting nonlinear curves for the normalised radial displacements that occur ahead and behind the tunnel face. Hence, this article attempts to provide a convenient set of alternatives for the preliminary design of tunnels excavated in saturated rock masses.
机译:本文的主要目的是提供一种在呈现塑料行为的饱和岩体挖掘中挖掘出隧道的水力机械(HM)建模的一般数值方法,考虑到多级挖掘过程。首先,基于有限元方法,在软件代码中提出并实现了新的挖掘方法。在该方法中,挖掘元件中的应力平滑地降低。作为验证,已经测试了唯一性原理,用于多级挖掘。然后,已经进行了数值研究以验证所提出的挖掘方法在数值计算中的优点,表明所提出的方法提高了计算效率和减轻了会聚问题。因此,该方法可以解决与挖掘问题有关的通常数值困难,因此允许在隧道挖掘过程中更深入地分析岩体的HM行为。此外,使用所提出的方法在Code_Bright中获得的结果与用于纵向变形轮廓(LDP)的现有解决方案进行比较,包括弹性塑料解决方案,用于机械问题和用于HM问题的弹性溶液。此外,本文介绍了在饱和岩体中挖掘出来的隧道的HM模型,分析了LDP对HM条件的敏感性以及岩体质量。最后,基于从数值模拟获得的大量数据,通过拟合未来的标准化径向位移的非线性曲线来获得稳态HM框架中挖掘出稳态HM框架的隧道LDP的经验解。隧道脸后面。因此,本文试图为在饱和岩体挖掘出来的隧道初步设计方面提供了一套方便的替代方案。

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