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Groundwater characterization of a heterogeneous granitic rock massif for shallow tunneling

机译:浅埋隧道非均质花岗岩岩层的地下水特征

摘要

Shallow tunneling may encounter a number of problems, the most important of which is high water inflows in transmissive areas that are often associated with fractures or discontinuities. Moreover, research into shallow tunneling may be limited by the duration and cost of the civil engineering works. Two important aspects that are often overlooked are: variable groundwater behavior of faults (conduit, barrier, conduit-barrier), and role of groundwater connectivity between fractures that cross the tunnel and the rest of the rock massif. These two aspects should be taken into account in the geological and groundwater characterization to correct the tunnel design and minimize hazards. A geological study and a preliminary hydrogeological characterization (including a prior steady state investigation and cross bore-hole tests) were carried out in a granitic sector during the construction of Line 9 of the Barcelona subway (B-20 area). The hydrogeological conceptual model was constructed using a quasi-3D numerical model, and different scenarios were calibrated. Faults and dikes show a conduit-barrier behavior, which partially compartmentalized the groundwater flow. The barrier behavior, which is the most marked effect, is more prominent in faults, whereas conduit behavior is more notable in dikes. The characterization of groundwater media entailed a dewatering plan and changes in the tunnel course. This enabled us to construct the tunnel without any problems.
机译:浅埋隧道可能会遇到许多问题,其中最重要的问题是透射区域的大量涌水,这些区域经常与裂缝或不连续性有关。此外,对浅埋隧道的研究可能会受到土建工程的持续时间和成本的限制。经常被忽略的两个重要方面是:断层的地下水变化行为(导管,屏障,导管屏障),以及穿越隧道的裂缝与其余岩层之间的地下水连通性的作用。在地质和地下水特征分析中应考虑到这两个方面,以纠正隧道设计并使危险最小化。在巴塞罗那地铁9号线(B-20地区)的建设过程中,在花岗岩部门进行了地质研究和初步的水文地质特征(包括先前的稳态研究和跨孔试验)。使用准3D数值模型构建了水文地质概念模型,并对不同的场景进行了校准。断层和堤坝显示出导管屏障的行为,从而部分分隔了地下水流。屏障行为是最明显的影响,在断层中更为突出,而在堤防中则更为明显。地下水介质的表征需要进行脱水计划并改变隧道走向。这使我们能够毫无问题地构建隧道。

著录项

  • 作者

    Font-Capó J.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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