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Responses of Cross-River Tunnel due to Overlying Shield Tunnel Construction (Ⅱ):Influence of Distance

机译:跨河隧道因覆盖盾构隧道施工的回应(Ⅱ):距离的影响

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Construction of shield tunnel will inevitably change the stress field and displacement field of soil mass.Consequently,adjacent existing underground structures will be affected by construction of new projects.As a typical example,the responses of cross-river tunnel due to overlying subway tunnel construction are presented and the influence of the vertical distance between two tunnels is particularly focused on.Considering the difference of discount coefficients between transverse rigidity and longitudinal rigidity of shield tunnel,the change of stress field in soil mass,and so on,the writers conducted numerical analyses via 3D finite element program for four values of vertical distance (2 m,5m,8 m,and 11.4 m).Displacements,curvatures,and inner forces of cross-river tunnel were selected to investigate the responses of cross-river tunnel due to new subway tunnel excavation with different distances.The results show that the rebound pattern and amplitude of cross-river tunnel depend on the distance between the two tunnels.The increase of distance induces decreases of rebound amplitude and maximum lateral displacement.Compared with the rebound values,the lateral displacement values are comparatively smaller and even can be ignored in engineering.In addition,the cross-river tunnel is almost unaffected beyond the distance of 2.5D (D represents the external diameter of cross-river tunnel) to the symmetric plane.Furthermore,the internal forces in symmetric plane of cross-river tunnel are close to the initial values and the internal forces in longitudinal direction decrease with the increase of the distance between two tunnels.Finally,the minimum curvature radii can't achieve the critical value in the four cases and the maximum rebound values exceed the critical value in some cases according to the criteria of metro protection in Shanghai.
机译:盾构隧道的构造将不可避免地改变土壤质量的应力场和位移场。应对现有的地下结构将受到新项目建设的影响。典型的例子,跨河隧道因覆盖地铁隧道施工而受到影响呈现和垂直距离的两个隧道之间的影响特别集中on.Considering折扣系数的横向刚度和盾构隧道,应力场的土壤质量变化的纵向刚度之间的差,等,作家进行数值通过三维有限元程序分析了垂直距离的四个值(2M,5M,8M,和11.4米).Displacements,曲率,以及过江隧道的内力被选定来调查过江隧道由于的响应与不同距离的新地铁隧道挖掘。结果表明,跨河隧道的反弹模式和幅度取决于两个隧道之间的距离。距离的增加引起反弹幅度和最大横向位移。随着反弹值,横向位移值比较较小,甚至可以在工程中忽略。此外,跨河隧道几乎不受影响超出2.5D的距离(d表示过江隧道的外径),以对称plane.Furthermore,在过江隧道的对称平面中的内力接近在纵向的初始值和内力方向降低与距离的2 tunnels.Finally之间的增加,最小曲率半径不能在四种情况达到临界值和最大回弹值根据地铁保护在上海的标准超过在一些情况下,临界值。

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