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Tools to simulate changes in hydraulic flow systems in complex geologic settings affected by tunnel excavation

机译:模拟隧道挖掘影响复杂地质环境中液压流量系统变化的工具

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摘要

Geotechnical problems during and after tunnel construction are often related to groundwater circulation. In tunnelling projects, however, groundwater flow systems are often only partly known. This uncertainty is manifested by the typically scarce hydraulic data that limits the understanding of subsurface hydrogeological processes. In particular, there is a general lack of data documenting groundwater flow changes caused by tunnelling. The present paper presents a concept involving an iterative understanding of subsurface hydrogeological systems influenced by tunnelling. A major challenge of our approach consists of integrating complex geological geometries from a 3D geological model (GOCAD) into a numerical groundwater flow model (COMSOL Multiphysics). The starting point is a 3D geological model representing a regional tectonic system located in the Jura Mountains in Switzerland. This geological model is transferred into regional and local-scale groundwater flow models. Due to the lack of hydrogeological data, a 3D view of geological-hydrogeological systems is often required to respond to groundwater-induced geotechnical problems in tunnelling. Numerical groundwater flow models make it possible to perform sensitivity analysis and to test how boundary conditions and hydraulic property distributions influence calculated groundwater flow regimes. In addition, our approach enables testing the effects of changes of hydraulic regimes due to tunnel excavation at different scales.
机译:隧道施工期间和之后的岩土问题通常与地下水循环有关。然而,在隧道工程中,地下水流量系统通常仅是已知的。这种不确定性由通常稀缺的液压数据表现出,这些数据限制了对地下水文过程的理解。特别是,通过隧道引起的地下水流动的普遍缺乏数据。本文提出了一种涉及对受隧道影响影响的地下水文系统的迭代理解​​的概念。我们方法的主要挑战包括将复杂的地质几何形状与3D地质模型(GOCAD)集成到数值地下水流量模型(COMSOL Multiphysics)中。起点是代表位于瑞士汝拉山脉的区域构造系统的3D地质模型。该地质模型转入区域和局部地下水流动模型。由于缺乏水文地质数据,通常需要一种地质 - 水文地质系统的3D视图来应对地下水引起的隧道造成的岩土问题。数值地下水流模型使得能够进行灵敏度分析,并测试边界条件和液压特性分布如何影响计算的地下水流量。此外,我们的方法可以通过不同尺度的隧道挖掘来测试液压制度变化的影响。

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