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砂土地层中不同支护模式下盾构隧道开挖面稳定性研究

武军, 廖少明, 王坤. 砂土地层中不同支护模式下盾构隧道开挖面稳定性研究[J]. 地质力学学报, 2018, 24(6): 879-886. doi: 10.12090/j.issn.1006-6616.2018.24.06.092
引用本文: 武军, 廖少明, 王坤. 砂土地层中不同支护模式下盾构隧道开挖面稳定性研究[J]. 地质力学学报, 2018, 24(6): 879-886. doi: 10.12090/j.issn.1006-6616.2018.24.06.092
Jun WU, Shaoming LIAO, Kun WANG. FACE STABILITY OF SHIELD TUNNEL WITH DIFFERENT SUPPORT MODELS IN SAND[J]. Journal of Geomechanics, 2018, 24(6): 879-886. doi: 10.12090/j.issn.1006-6616.2018.24.06.092
Citation: Jun WU, Shaoming LIAO, Kun WANG. FACE STABILITY OF SHIELD TUNNEL WITH DIFFERENT SUPPORT MODELS IN SAND[J]. Journal of Geomechanics, 2018, 24(6): 879-886. doi: 10.12090/j.issn.1006-6616.2018.24.06.092

砂土地层中不同支护模式下盾构隧道开挖面稳定性研究

  • 基金项目:
    国家自然科学基金资助项目(51078292)
详细信息
    作者简介: 武军(1984-), 男, 博士, 工程师, 从事隧道施工环境影响及隧道稳定性、耐久性研究。E-mail:wwwx207@yeah.net
  • 中图分类号: U455

FACE STABILITY OF SHIELD TUNNEL WITH DIFFERENT SUPPORT MODELS IN SAND

  • 防止盾构隧道开挖面失稳的关键是合理设置不同盾构支护平衡模式下的支护压应力。在改进的筒仓楔形体模型计算方法得出的开挖面松动土体对刀盘压力呈近似呈抛物线分布的基础上,研究了气压支护模式、泥水支护模式和土压支护模式下,盾构隧道开挖面分别在地下水位以上和地下水位以下时开挖面的稳定性,研究结果表明:有效支护应力均匀分布时,除粘土开挖面下部失稳外,其余土体均为开挖面中下部失稳;有效支护压应力呈上小下大的梯形分布时,除软粘土开挖面下部失稳外,其余土体均为开挖面上部失稳;有效支护应力呈上大下小的梯形分布时,所有土体开挖面均为下部失稳;在气压、泥水和土压平衡支护模式下,开挖面在未到达筒仓楔形体模型所假设的开挖面整体失稳前,开挖面已经发生了局部失稳,采用筒仓楔形体模型确定的极限稳定支护力是不安全的。最后给出了开挖面松动土体对刀盘压应力公式中计算参数的无量纲化图,以方便实际工程运用。
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  • 图 1  不同支护模式下支护压应力分布图[13]

    Figure 1. 

    图 2  不同支护模式下开挖面合应力沿深度的分布状态图

    Figure 2. 

    图 3  不同支护模式下开挖面合应力与δ的关系图

    Figure 3. 

    图 4  设计参数的无量纲化图

    Figure 4. 

  • Horn M. Horizontal earth pressure on perpendicular tunnel face[A]. Hungarian National Conference of the Foundation Engineer Industry[C]. Budapest: Hungary Press,, 1961.

    Anagnostou G, kovári K. The face stability of slurry-shield-driven tunnels[J]. Tunnelling and Underground Space Technology, 1994, 9(2):165~174. doi: 10.1016/0886-7798(94)90028-0

    Anagnostou G, kovári K. Face stability conditions with earth-pressure-balanced shields[J]. Tunnelling and Underground Space Technology 1996, 11(2):165~173. doi: 10.1016/0886-7798(96)00017-X

    Chambon P, Corté J F. Shallow tunnels in cohesionless soil:stability of tunnel face[J]. Journal of Geotechnical Engineering, 1994, 120(7):1148~1165. doi: 10.1061/(ASCE)0733-9410(1994)120:7(1148)

    Oblozinsky P, Kuwano J. Centrifuge experiments on stability of tunnel face[J]. Slovak Journal of Civil Engineering, 2004, (4):23~29.

    Berthoz N, Branque D, Subrin D, et al. Face failure in homogeneous and stratified soft ground:theoretical and experimental approaches on 1g EPBS reduced scale model[J]. Tunnelling and Underground Space Technology, 2012, 30:25~37. doi: 10.1016/j.tust.2012.01.005

    袁大军, 王飞, 董朝文, 等.盾构切削大直径钢筋混凝土桩基新型刀具研究[J].中国公路学报, 2016, 29(3):89~97. doi: 10.3969/j.issn.1001-7372.2016.03.012

    YUAN Dajun, WANG Fei, DONG Chaowen, et al. Study on new-style cutter for shield cutting large-diameter reinforced concrete pile[J]. China Journal of Highway and Transport, 2016, 29(3):89~97. (in Chinese with English abstract) doi: 10.3969/j.issn.1001-7372.2016.03.012

    张稳军, 苏忍, 张高乐, 等.考虑固结影响的双洞盾构隧道非同步施工引起的土体变形研究[J].中国公路学报, 2016, 29(9):103~111, 151. doi: 10.3969/j.issn.1001-7372.2016.09.014

    ZHANG Wenjun, SU Ren, ZHANG Gaole, et al. Study on soil deformation induced by non-synchronous construction of double-tube shield tunnels considering consolidation[J]. China Journal of Highway and Transport, 2016, 29(9):103~111, 151. (in Chinese with English abstract) doi: 10.3969/j.issn.1001-7372.2016.09.014

    Broere W. Tunnel face stability and new CPT application[D]. Delft: Technical University of Delft, 2001.

    Anagnostou G. The contribution of horizontal arching to tunnel face stability[J]. Geotechnik, 2012, 35(1):34~44. doi: 10.1002/gete.v35.1

    武军, 廖少明, 时振昊.考虑土拱效应的盾构隧道开挖面稳定性[J].同济大学学报(自然科学版), 2015, 43(2):213~220. http://d.old.wanfangdata.com.cn/Periodical/tjdxxb201502008

    WU Jun, LIAO Shaoming, SHI Zhenhao. Workface stability of shield tunnel considering arching effect[J]. Journal of Tongji University (Natural Science), 2015, 43(2):213~220. (in Chinese with English abstract) http://d.old.wanfangdata.com.cn/Periodical/tjdxxb201502008

    Paik K H, Salgado R. Estimation of active earth pressure against rigid retaining walls considering arching effects[J]. Geotechnique, 2003, 53(7):643~653. doi: 10.1680/geot.2003.53.7.643

    Anagnostou G, Perazzelli P. The stability of a tunnel face with a free span and a non-uniform support[J]. Geotechnik, 2013, 36(1):40~50. doi: 10.1002/gete.201200014

    Thorpe J P. Ground movements during tunneling in sand[D]. Kingston: Queen's University, 2007.

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出版历程
收稿日期:  2017-07-08
修回日期:  2018-09-30

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