人民长江 ›› 2022, Vol. 53 ›› Issue (9): 94-101.doi: 10.16232/j.cnki.1001-4179.2022.09.015

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引水隧洞断裂地质缺陷分析及工程应对策略

占艳平;林仕祥;刘恒   

  • 发布日期:2022-10-20

Geological defects analysis and engineering response strategies of fault in diversion tunnel

ZHAN Yanping, LIN Shixiang, LIU Heng   

  • Published:2022-10-20

摘要: 穿越大型断裂(断层)破碎带的隧洞段往往是隧洞工程施工与运行的安全隐患段,因此也往往是勘察、设计、施工研究的重点和热点。以正在建设中的十堰市中心城区水资源配置工程的主线引水隧洞(2号隧洞)穿越竹山断裂段为例,根据研究区工程地质条件,以及竹山断裂空间分布和地质特性,对竹山断裂的地质缺陷进行分析。结果表明:竹山断裂主要有断裂带物质组成复杂、断裂带岩性软弱破碎、破碎带含水丰富三大地质缺陷。借鉴该工程中已完工隧洞过竹山断裂的工程建设经验,进一步对主线引水隧洞穿越断裂(断层)的工程应对策略进行分析研究,总结出应对策略具体技术路线为:应用“精细化”工程技术理念,制定经济合理、技术可行的隧洞开挖、支护方案;采用综合勘察手段,开展精细化超前地质预报工作;研究精细化施工处理措施,及时调整隧洞开挖、支护方案;按照确定的隧洞开挖、支护方案,开展隧洞施工工作;加强洞身变形监测,根据施工揭露的地质情况及时进行设计变更。

关键词: 隧洞工程;断裂破碎带;地质缺陷;工程应对策略;支护方案;竹山断裂;

Abstract: The tunnel sections through the large fault (fracture) zone are often considered as hidden danger sections for the construction and operation of tunnel engineering, so it has always been the focus and hot spot in survey, design and construction research. Taking the main line diversion tunnel (No.2 tunnel) passing through the Zhushan fault of the water resource allocation project under construction in the central urban area of Shiyan City as an example, the geological defects of the Zhushan fault are analyzed according to the engineering geological conditions of the research area and the spatial distribution and geological characteristics of the Zhushan fault. The results show that the Zhushan fault has three major geological defects, the complex material composition of the fault zone, the weak and broken lithology of the fault zone, and the rich water content in the fracture zone. The engineering response strategy for the main line headrace tunnel crossing the Zhushan fault is furtherly analyzed and studied by drawing on the engineering construction experiences of completed tunnel in this project. The specific technical route of the engineering response strategy is summarized as follows: applying concept of refinement engineering technology to formulate an economical and reasonable and technically feasible tunnel excavation and support plan; utilizing comprehensive survey methods to carry out refined and advanced geological forecasting work; refining the construction treatment measures and adjusting the tunnel excavation support plan in time; carrying out tunnel construction according to the determined tunnel excavation and support plan; strengthening the deformation monitoring of the tunnel and adapting design scheme in time to the revealed geological conditions.

Key words: tunnel engineering; geological defects; response strategies; support scheme; Zhushan fault