土工基础 ›› 2021, Vol. 35 ›› Issue (5): 567-.

• 工程实录 • 上一篇    下一篇

宝盖山隧道穿越花岗岩接触带的大变形机理及治理措施

姚红荣   

  1. (武汉市洪山区市政工程监督管理站,武汉 430070)
  • 收稿日期:2021-09-27 修回日期:2021-10-01 出版日期:2021-10-31 发布日期:2021-10-21
  • 作者简介:姚红荣(1969-),女,高级工程师,研究方向为市政工程监督管理。

Large Deformation and Mitigation Measures in Excavation of Baogaishan Tunnel Through Granite Contact Zone

YAO Hongrong   

  1. (Hongshan District Municipal Engineering Quality Assurance Administration, Wuhan 430070)
  • Received:2021-09-27 Revised:2021-10-01 Online:2021-10-31 Published:2021-10-21

摘要: 浅埋宝盖山隧道穿过花岗岩与凝灰岩的接触蚀变带时,在支护结构完好的情况下隧道发生大变形,短时间造成拱顶沉降量达到1.2 m。通过地质调查和接触带附近岩体的岩相、矿物分析,揭示大变形的出现位置是花岗岩和凝灰岩相接的接触带。接触带附近由于特殊的岩浆演化和成岩过程,导致此区域发育大量高岭土、蒙脱石等亲水性的软岩矿物。大量亲水性的软岩矿物的存在不但为大变形的发展提供物质条件,而且导致围岩的物理、水理特征显著劣化。在隧道的开挖扰动、应力重分布、地下水渗流,导致预留围岩的变形和先后经历浸水-失水-浸水的过程。地下水的此循环过程不但诱使亲水性软岩矿物的膨胀,还导致更大范围围岩的变形和作用在支护结构上的土压力超过其承载能力,进而诱发围岩的大变形。最后给出排水、加固围岩和加强初期支护等一系列治理措施,成功处理围岩的大变形,确保了工程安全。

关键词: 隧道, 花岗岩接触带, 大变形机理, 治理措施

Abstract: Large deformation was observed in excavation of Baogaishan Tunnel through the granite and tuff contact zone. Although the excavation supporting structures were in good conditions, excessive deformation at crown of the tunnel was accumulated to 1.2 meters in a short period of time. Through a thorough geological reconnaissance and analyses of petrographic and minerals of rock mass near the contact zone, results showed that large deformations occurred in a location between granite and tuff contact zone. Due to the special magmatic evolution and diagenesis process near the contact zone, soft rock mass that consisting of kaolinite, montmorillonite and other hydrophilic soft rock minerals were well developed in this area. The presence of a large number of hydrophilic soft rock minerals not only provides material conditions for the development of large deformations, but also results in the significant deterioration of the physical and hydrological characteristics of the surrounding rock mass. With the disturbance by the tunnel excavation, the stress redistribution and groundwater seepage, these factors result in the reservation of the surrounding rock mass deformation. The rock mass therefore experiences of cyclic flooding-water loss flooding process. This cycle of groundwater saturation not only causes the expansion of hydrophilic soft rock minerals, but also contributes to the deformation of the larger extent surrounding rock mass and the excessive earth pressure acting on the support structures beyond their design capacity, which in turn result in the large deformation of the surrounding rock mass. A series of mitigation measures such as drainage path, reinforcement of surrounding rock mass and early support were implemented, and the deformation of surrounding rock was successfully controlled to ensure the safety of the project.

Key words: tunnel excavation, granite contact zone, mechanism of large deformation, mitigation measures

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