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Water leakage susceptible areas in loess multi-arch tunnel operation under the lateral recharge conditions

机译:在横向充电条件下黄土多拱隧道运行中的漏水易感区域

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摘要

In this study, the water leakage susceptible areas in a loess multi-arch tunnel were examined, providing a basis for the prevention and control of water leakage disease during the operation periods of multi-arch tunnels in loess areas. Through the field investigation of the leakage in loess multi-arch tunnel, the leakage mainly focuses on three joints: construction joints, expansion joints, and settlement joints. The spatial distribution of the leaking part in the tunnel is summarized and abstractly into three types: annular cracks, longitudinal cracks and full longitudinal cracks + circumferential cracks. By setting up different number of annular and longitudinal cracks, a total of 20 combinations were designed. This paper sets three kinds of working conditions, including 40 and 60 m of reinforcement water head and 60 m of no reinforcement water head, considering groundwater lateral recharge conditions. Using the midas/GTS geo-technical analysis system software, 3D numerical simulations were conducted to determine the distributions of the total water head and water pressure in cracks for all the combinations of water leakage positions under different working conditions and to analyze the variations in the seepage field of the surrounding rock. Based on the areas where the total water head and water pressure in the cracks sharply changed, the water leakage susceptible areas were determined. The rationality and reliability of the method were verified by a comparison with the results of a field investigation.
机译:在这项研究中,检查了黄土多拱隧道中的漏水易感区域,为黄土地区多拱隧道的运行期内预防和控制漏水疾病的依据。通过对黄土多拱隧道泄漏的现场调查,泄漏主要集中在三个关节:施工关节,膨胀接缝和沉降接头上。隧道中泄漏部分的空间分布总结并抽象成三种类型:环形裂缝,纵向裂缝和全纵向裂缝+周向裂缝。通过设置不同数量的环形和纵向裂缝,设计了20种组合。本文设定了三种工作条件,包括40和60米的加固水头和60米,无需加强水头,考虑到地下水横向充电条件。使用MIDAS / GTS地理技术分析系统软件,进行了3​​D数值模拟,以确定在不同工作条件下的漏水位置的所有组合的裂缝中总水头和水压的分布,并分析围岩的渗流领域。基于裂缝中总水头和水压急剧改变的区域,确定了漏水易感区域。通过与现场调查结果的比较来验证该方法的合理性和可靠性。

著录项

  • 来源
    《Environmental Geology》 |2020年第15期|368.1-368.32|共32页
  • 作者单位

    Xian Univ Sci & Technol Coll Geol & Environm Xian 710054 Peoples R China|Shaanxi Prov Key Lab Geol Support Coal Green Expl Xian 710054 Peoples R China|Xian Univ Sci & Technol Geol Res Inst Coal Green Min Xian 710054 Peoples R China|Changan Univ Shaanxi Prov Major Lab Highway Bridge & Tunnel Xian 710054 Peoples R China;

    Xian Univ Sci & Technol Geol Res Inst Coal Green Min Xian 710054 Peoples R China;

    Xian Univ Sci & Technol Coll Geol & Environm Xian 710054 Peoples R China;

    Xian Univ Sci & Technol Coll Geol & Environm Xian 710054 Peoples R China;

    Xian Univ Sci & Technol Coll Geol & Environm Xian 710054 Peoples R China;

    Changan Univ Shaanxi Prov Major Lab Highway Bridge & Tunnel Xian 710054 Peoples R China|Changan Univ Sch Highway Xian 710054 Peoples R China;

    Changan Univ Shaanxi Prov Major Lab Highway Bridge & Tunnel Xian 710054 Peoples R China|Changan Univ Sch Highway Xian 710054 Peoples R China;

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

    Tunnel engineering; Water leakage; Site investigation; Numerical simulation; Loess multiple-arch tunnel; Lateral recharge condition;

    机译:隧道工程;漏水;现场调查;数值模拟;黄土多拱隧道;横向充电条件;
  • 入库时间 2022-08-18 22:20:26

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