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Study of the Construction Sequence of Overlapping Tunnels by the Shield Tunneling Method: A Case Study of the Longest Overlapping Tunnel in China

机译:盾构隧道法研究重叠隧道施工序列 - 以中国最长的重叠隧道为例

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In this study, the reasonable construction sequence of an overlapping tunnel shield is investigated. Taking the overlapping tunnel of Tianjin Metro Line 5 as the background, a three-dimensional numerical model was established using Flac3D software to study the influence of the “first up and then down” and “first down and then up” construction sequences of the overlapping tunnel on the surface settlement, stratum displacement, lining radial stress, and displacement. The research results show that the shape and width of the final settlement tank on the ground under the two conditions are basically the same, and the difference between the maximum cumulative settlements is small. The accumulated ground settlement caused by the first up and then down construction sequence is 1.8?mm larger than that caused by the first down and then up sequence. The difference between the two working conditions on the vertical displacement of the stratum mainly occurs in the middle stratum of the upper and lower tunnels, and the proportion of the strata in the uplifted state and subsidence state is different. The construction sequence has little effect on the radial stress on the lining of the upper and lower tunnels. Under these two conditions, the excavation of the second tunnel causes a small change in the radial stress of the preceding tunnel lining, both within 4.2%. Under the working condition of first down and then up, the construction of the second tunnel causes the lining of the preceding tunnel to rise by 7.2~9.2?mm. Under the condition of first up and then down, the construction of the second tunnel causes the lining of the preceding tunnel to sink again by 9.1~10.4?mm. By comparing the effects of the two working conditions on the stratum and the tunnel lining, it is recommended that the construction be carried out in the order of first down and then up.
机译:在该研究中,研究了重叠隧道屏蔽的合理施工序列。采用天津地铁5号线5的重叠隧道作为背景,使用FLAC3D软件建立了三维数值模型,以研究“首先提升”和“首先下拉”的影响重叠的影响隧道表面沉降,层位移,衬里径向应力和位移。研究结果表明,在两个条件下,地面上最终沉降罐的形状和宽度基本相同,最大累积沉降之间的差异很小。由第一个提升和下降施工序列引起的累积地沉降比第一个下调和上调序列的序列大1.8Ωmm。层上的两个工作条件与地层垂直位移的差异主要发生在上隧道的中间层中,并且升降状态和沉降状态中的地层的比例不同。施工序列对上下隧道衬砌的径向应力几乎没有影响。在这两个条件下,第二隧道的挖掘导致前隧道衬里的径向应力的少量变化,无论是在4.2%之内。在首次下来然后向上的工作条件下,第二隧道的结构导致前隧道的衬里上升7.2〜9.2?mm。在首先提升的条件下,第二隧道的结构导致前面的隧道的衬里再次沉入9.1〜10.4?mm。通过比较阶层和隧道衬里上的两个工作条件的影响,建议按照首先下调的顺序进行施工。

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