• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊
ZHOU Ping, WANG Zhi-jie, HOU Wei-ming, ZHOU Fei-cong, DU Yan-liang, FENG Ji-meng, XU Hai-yan. Local slaking instability characteristics and catastrophic prediction of deep tunnels in Xigeda strata[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(3): 503-512. DOI: 10.11779/CJGE202003012
Citation: ZHOU Ping, WANG Zhi-jie, HOU Wei-ming, ZHOU Fei-cong, DU Yan-liang, FENG Ji-meng, XU Hai-yan. Local slaking instability characteristics and catastrophic prediction of deep tunnels in Xigeda strata[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(3): 503-512. DOI: 10.11779/CJGE202003012

Local slaking instability characteristics and catastrophic prediction of deep tunnels in Xigeda strata

More Information
  • Received Date: January 12, 2019
  • Available Online: December 07, 2022
  • In order to study the local infiltration and instability characteristics of the tunnels in Xigeda strata with "Becoming powder because of wind and forming mud owing to water", the indoor soil tests are carried out to analyze the influences of water content on the mechanical properties of the Xigeda strata, and the numerical simulation method is used to explore the deformation characteristics of the surrounding rock of the tunnels in Xigeda strata with change of local water content. The local catastrophe theory is introduced, and the discriminant equation for the water softening stability of the surrounding rock of the tunnels is proposed. The rationality of the results is verified by field monitoring. The results show that the surrounding rock of the Xigeda strata has significant water sensitivity. The mechanical properties of the original rock of the shallow gray shale-sandstone sandstone are most affected by the water content. When the water content exceeds the sensitive limit, the surrounding rock deteriorates rapidly. The mechanical properties show a leaping decline. The increase of the local water content in the circumferential direction of the tunnels in Xigeda strata will lead to the intensification of their convergence deformation. When the water content of the surrounding rock at the vault and the invert arch reaches 30%, the arch settlement and the basal subsidence are obvious. If it is enlarged, the local slaking at the side wall will have a great influence on the horizontal displacement of the surrounding rock, which may cause the surrounding rock to invade the building boundary or even have sudden instability. There are two main modes of longitudinal infiltration of the main inversion: end the cantilever beam modes of end slaking and the simply supported beam mode of the initial branch slaking. In the former mode, at low water content, the displacement of the surrounding rock increases with the proximity of the wetted part. At high water content, the displacement of the surrounding rock increases with the growth rate near the slaking part. In the latter mode, the initial support displacement at the slaking center is most affected by the change of water content, and the vertical displacement of the dome is reduced by about 64.2%. The flat displacement is reduced by about 62.5%, and the vertical displacement of the dome is reduced by about 84.6%. The displacement changes at both sides of the center are different, and the deformation of the surrounding rock near the face is always greater than that in other locations. Based on the water sensitivity of the surrounding rock of the Xigeda strata and the softening plastic characteristics owing to water, the local soft slaking softening mechanical model for the surrounding rock is established, and the derived discriminant equation for stability of the surrounding rock has feasibility and high accuracy in practical engineering application. The research results can provide guidance for the safe construction and stability evaluation of the tunnels in the later Sichuan-Tibet Railway.
  • [1]
    徐则民, 刘文连. 昔格达组地层研究中需要注意的若干关键问题[J]. 地学前缘, 2011, 18(5): 256-270.

    XU Ze-min, LIU Wen-lian. Several key issues to be noted in the study of the Xigeda Formation[J]. Geoscience Frontiers, 2011, 18(5): 256-270. (in Chinese)
    [2]
    丁文富, 张广泽, 宋章. 成昆铁路昔格达地层工程地质特性及对策研究[J]. 铁道工程学报, 2017, 34(4): 1-5.

    DING Wen-fu, ZHANG Guang-ze, SONG Zhang. Study on engineering geological characteristics and countermeasures of Xigeda stratum in Chengdu-Kunming Railway[J]. Journal of Railway Engineering Society, 2017, 34(4): 1-5. (in Chinese)
    [3]
    周罕, 曹平, 张科. 昔格达组黏土岩和粉砂岩现场直剪试验研究[J]. 中南大学学报(自然科学版), 2014, 45(10): 3544-3550.

    ZHOU Han, CAO Ping, ZHANG Ke. Study on direct shear test of clay rock and siltstone in Xigeda Formation[J]. Journal of Central South University (Science and Technology), 2014, 45(10): 3544-3550. (in Chinese)
    [4]
    向贵府, 许模, 崔杰. 昔格达地层岩土颗粒组成及分形特征研究[J]. 重庆交通大学学报(自然科学版), 2018, 37(7): 60-63, 75.

    XIANG Gui-fu, XU Mo, CUI Jie. Study on particle composition and fractal characteristics of Xigeda stratigraphic geotechnical soil[J]. Journal of Chongqing Jiaotong University (Natural Science Edition), 2018, 37(7): 60-63, 75. (in Chinese)
    [5]
    周平, 王志杰, 徐海岩, 等. 考虑含水率的昔格达地层隧道围岩稳定及亚级分级研究[J]. 土木工程学报, 2017, 50(12): 97-110.

    ZHOU Ping, WANG Zhi-jie, XU Hai-yan, et al. Study on surrounding rock stability and sub-classification of Xigeda Formation tunnel considering water content[J]. China Civil Engineering Journal, 2017, 50(12): 97-110. (in Chinese)
    [6]
    周平, 王志杰, 徐海岩, 等. 昔格达地层隧道变形特性曲线及变形机理研究[J]. 土木工程学报, 2018, 51(10): 107-121.

    ZHOU Ping, WANG Zhi-jie, XU Hai-yan, et al. Study on deformation characteristic curve and deformation mechanism of Xigeda stratum tunnel[J]. China Civil Engineering Journal, 2018, 51(10): 107-121. (in Chinese)
    [7]
    周平. 昔格达地层长大铁路隧道变形—灾变特征及失稳机理研究[D]. 成都: 西南交通大学, 2018.

    ZHOU Ping. Study on Deformation-Catastrophe Characteristics and Instability Mechanism of the Changzhida Strata Long Railway Tunnel[D]. Chengdu: Southwest Jiaotong University, 2018. (in Chinese)
    [8]
    孟祥磊. 昔格达地层软弱围岩隧道变形机理及支护技术研究[D]. 成都: 西南交通大学, 2015.

    MENG Xiang-lei. Research on Deformation Mechanism and Support Technology of Weak Surrounding Rock Tunnel in Xigeda Stratum[D]. Chengdu: Southwest Jiaotong University, 2015. (in Chinese)
    [9]
    马德林. 昔格达黏土岩弹塑性损伤本构模型及隧道工程应用研究[D]. 成都: 西南交通大学, 2017.

    MA De-lin. The Elastoplastic Damage Constitutive Model of Xigeda Clay Rock and its Application in Tunnel Engineering[D]. Chengdu: Southwest Jiaotong University, 2017. (in Chinese)
    [10]
    王志杰, 周平, 徐海岩, 等. 昔格达地层隧道围岩灾变特征及致灾因子研究[J]. 铁道工程学报, 2017, 34(11): 67-75.

    WANG Zhi-jie, ZHOU Ping, XU Hai-yan, HOU Wei-ming, et al. Study on the characteristics of surrounding rock disasters and disaster factors in Xigeda stratum tunnel[J]. Journal of Railway Engineering Society, 2017, 34(11): 67-75. (in Chinese)
    [11]
    王志杰, 许瑞宁, 何能方. 昔格达组地层大断面隧道变形特征分析[J]. 隧道建设, 2016, 36(12): 1412-1420.

    WANG Zhi-jie, XU Rui-ning, HE Neng-fang. Analysis of deformation characteristics of large-section tunnels in Xigeda Formation[J]. Tunnel Construction, 2016, 36(12): 1412-1420. (in Chinese)
    [12]
    许瑞宁, 王志杰. 昔格达组地层大断面隧道施工工法比选分析[J]. 公路, 2017, 62(1): 231-236.

    XU Rui-ning, WANG Zhi-jie. Analysis of construction method comparison of large cross-section tunnels in Xigeda Formation[J]. Highway, 2017, 62(1): 231-236. (in Chinese)
    [13]
    许瑞宁. 昔格达组地层大断面隧道变形规律及结构受力特征研究[D]. 成都: 西南交通大学, 2016.

    XU Rui-ning. Study on Deformation Law and Structural Stress Characteristics of Large-Section Tunnels in Xigeda Formation[D]. Chengdu: Southwest Jiaotong University, 2016. (in Chinese)
    [14]
    孙长升. 含水率对昔格达地层隧道围岩稳定性影响及控制技术研究[D]. 成都: 西南交通大学, 2015.

    SUN Chang-sheng. Study on the Influence of Water Content on the Stability of Surrounding Rock of Xigeda Stratum Tunnel and its Control Technology[D]. Chengdu: Southwest Jiaotong University, 2015. (in Chinese)
    [15]
    王志杰, 高靖遥, 张鹏, 等. 基于突变理论的高压岩溶隧道掌子面稳定性研究[J]. 岩土工程学报, 2019, 41(1): 95-103.

    WANG Zhi-jie, GAO Jing-yao, ZHANG Peng, et al. Study on the stability of high-pressure karst tunnel face based on catastrophe theory[J]. Journal of Geotechnical Engineering, 2019, 41(1): 95-103. (in Chinese)

Catalog

    Article views (313) PDF downloads (199) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return