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张治国, 张成平, 奚晓广. 双线隧道不同布置方式下相互作用影响的地层位移解析[J]. 岩土工程学报, 2019, 41(2): 262-271. DOI: 10.11779/CJGE201902003
引用本文: 张治国, 张成平, 奚晓广. 双线隧道不同布置方式下相互作用影响的地层位移解析[J]. 岩土工程学报, 2019, 41(2): 262-271. DOI: 10.11779/CJGE201902003
ZHANG Zhi-guo, ZHANG Cheng-ping, XI Xiao-guang. Closed solutions to soil displacements induced by twin-tunnel excavation under different layout patterns[J]. Chinese Journal of Geotechnical Engineering, 2019, 41(2): 262-271. DOI: 10.11779/CJGE201902003
Citation: ZHANG Zhi-guo, ZHANG Cheng-ping, XI Xiao-guang. Closed solutions to soil displacements induced by twin-tunnel excavation under different layout patterns[J]. Chinese Journal of Geotechnical Engineering, 2019, 41(2): 262-271. DOI: 10.11779/CJGE201902003

双线隧道不同布置方式下相互作用影响的地层位移解析

Closed solutions to soil displacements induced by twin-tunnel excavation under different layout patterns

  • 摘要: 双线隧道开挖引起地层变形的既有理论研究,一般基于单线隧道计算结果直接采用线性叠加进行分析,而忽略了双线隧道之间的相互作用影响。为研究近距离地下工程开挖的相互影响,基于位移控制Schwarz交替法和复变函数理论,结合隧道洞周椭圆化收敛变形边界条件,提出了任意布置方式下双线盾构隧道开挖引起周围地层变形的计算方法。该方法以位移控制边界条件进行求解,体现了双线隧道开挖间的相互作用影响。通过离心试验和工程实例,将基于位移控制Schwarz交替法的复变函数理论解与线性叠加法解答以及实测数据进行了对比验证;针对双线隧道水平和斜交两种不同布置方式进行相关参数分析,获取了双线隧道间距变化引起的地层变形影响规律。结果表明:基于位移控制Schwarz交替法的复变函数方法求解得到的地表沉降曲线与实测值吻合较好,而直接线性叠加法解答存在较大误差。在地层等值线图规律分析中,水平与斜交布置下,两个隧道周围土体等值线图产生较为明显的相互“吸引”现象,隧道上方的土体沉降峰值线均向双线隧道中间倾斜,但随着双线隧道间距增加,“吸引”现象逐渐减弱。研究成果对于近距离双线盾构隧道开挖施工的现场保护措施制定提供一定的理论依据。

     

    Abstract: The existing theoretical researches on deformation of soils caused by twin-tunnel excavation are generally based on the linear superposition of single tunneling results and seldom consider the interaction effects between the two tunnels. Based on the displacement-controlled Schwarz alternating method and the complex variable function theory, and considering the oval deformation contraction boundary condition of tunnel opening, a method is proposed to analyze the deformation of the surrounding soils caused by twin-shield tunnel excavation in arbitrary position in order to reveal the interaction influences for the closed underground excavation. The method is based on the displacement boundary condition, which reflects the interaction between the twin tunnels during excavation. Through experiments and engineering cases, the theoretical solutions to the complex variable function based on the displacement-controlled Schwarz alternating method are obtained and compared with those of the linear superposition method and the measured data. The deformation influence laws of ground, which are caused by the variation of space between twin tunnels under two different layout patterns, horizontal and oblique, are acquired through parameter analyses. The results indicate that the surface settlement curve obtained by the complex variable function method based on the displacement-controlled Schwarz alternating method is in good agreements with the measured one, while the linear superposition method has a comparatively large error. Analysis of the laws of contour map indicates that

     

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