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Integration of groundwater by-pass facilities in the bottom slab design for large underground structures

机译:大型地下结构底板设计中地下水旁路设备的集成

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摘要

The impacts induced by the interaction between underground constructions and groundwater should be minimised by implementing corrective measures. These impacts are twofold, which means that underground constructions affect groundwater, and vice versa. Two common situations resulting from this interaction are the barrier effect (impact of an underground construction on groundwater) and groundwater pressure on the bottom slab (impact of groundwater on an underground construction). In the literature, there are examples and designs of mitigation measures to minimise both impacts. However, to the best of the authors' knowledge, there are not any designs that combine corrective measures to minimise these simultaneously. This paper proposes an innovative groundwater by-pass design to mitigate the barrier effect and to alleviate the groundwater pressure on the bottom slab. The proposed integrated design was applied to the largest underground infrastructure in Barcelona: the Sagrera railway station. The design was tested and compared numerically with a solution initially designed (not integrated). The numerical comparison was undertaken with three different hydrogeological scenarios. The proposed integrated design mitigated the barrier effect and optimised the bottom slab. It considerably reduced costs and increased safety during the construction phase.
机译:应该通过采取纠正措施来最大程度地减少地下建筑与地下水之间的相互作用所引起的影响。这些影响是双重的,这意味着地下建筑会影响地下水,反之亦然。这种相互作用导致的两种常见情况是屏障效应(地下建筑对地下水的影响)和地下水压力对底板的影响(地下水对地下建筑的影响)。在文献中,有一些缓解措施的示例和设计,可以最大程度地减少这两种影响。但是,据作者所知,没有任何设计可以结合纠正措施以同时最小化这些纠正措施。本文提出了一种创新的地下水旁通设计,以减轻障碍物的影响并减轻底板上的地下水压力。拟议的集成设计已应用于巴塞罗那最大的地下基础设施:萨格雷拉火车站。测试了该设计,并将其与最初设计的解决方案(未集成)进行了数值比较。在三种不同的水文地质情况下进行了数值比较。拟议的集成设计减轻了屏障效应,并优化了底部平板。它在建造阶段大大降低了成本并提高了安全性。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2018年第1期|231-243|共13页
  • 作者单位

    CSIC, Inst Environm Assessment & Water Res IDAEA, C Jordi Girona 18, ES-08034 Barcelona, Spain|Univ Politecn Cataluna, Dept Geotech Engn & Geosci, Jordi Girona 1-3, ES-08034 Barcelona, Spain|Hydrogeol Grp UPC CSIC, Associated Unit, Barcelona, Spain;

    Univ Liege, ArGEnCo, GE03, Hydrogeol & Environm Geol,Aquapole, B52-3 Sart Tilman, B-4000 Liege, Belgium;

    CSIC, Inst Environm Assessment & Water Res IDAEA, C Jordi Girona 18, ES-08034 Barcelona, Spain|Hydrogeol Grp UPC CSIC, Associated Unit, Barcelona, Spain;

    CSIC, Inst Environm Assessment & Water Res IDAEA, C Jordi Girona 18, ES-08034 Barcelona, Spain|Hydrogeol Grp UPC CSIC, Associated Unit, Barcelona, Spain;

    CSIC, Inst Environm Assessment & Water Res IDAEA, C Jordi Girona 18, ES-08034 Barcelona, Spain|Hydrogeol Grp UPC CSIC, Associated Unit, Barcelona, Spain|Barcelona Cicle Aigua SA BCASA, C Acer 16, Barcelona 08038, Spain;

    Univ Liege, ArGEnCo, GE03, Hydrogeol & Environm Geol,Aquapole, B52-3 Sart Tilman, B-4000 Liege, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bottom slab; Underground construction; Barrier effect; Groundwater by-pass; Numerical modelling;

    机译:底板;地下施工;屏障效应;地下水旁路;数值模拟;数值模拟;

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