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Journal of Zhejiang University SCIENCE A
ISSN 1673-565X(Print), 1862-1775(Online), Monthly
2014 Vol.15 No.11 P.896-913
Three-dimensional numerical simulation of mechanized twin stacked tunnels in soft ground
Abstract: The increase in transportation in large cities has made it necessary to construct twin tunnels at shallow depths. As far as the parallel excavation of mechanized twin tunnels is concerned, most of the cases reported in previous studies have focused on the interactions between two horizontally driven tunnels. However, less work has been devoted to the interactions between tunnels stacked over each other. The numerical investigation performed in this study has made it possible to evaluate the influence of the construction process on two stacked tunnels, using the FLAC3D finite difference element software. The structural forces induced in each of the stacked tunnels and the displacements in the surrounding ground have been highlighted. The results of the numerical analysis indicate that new tunnel construction can have a great impact on an existing tunnel. The greatest impacts are observed when the upper tunnel is excavated first. The excavation of the upper tunnel generally leads to greater surface settlements than when the lower tunnel is excavated first. This study also shows that the normal forces induced in the lower tunnel are always greater than those developed in the upper tunnel. The normal displacements and the bending moments induced in the lower tunnel are usually smaller than those in the upper tunnel.
Key words: 3D modelling, Stacked tunnels, Segmental tunnel lining, Lining response, Surface settlement, Tunnel support
创新要点:使用全三维数值模拟方法研究软土中双叠隧道施工对先挖隧道或地面的影响。
研究方法:1. 运用FLAC软件创建双叠隧道的三维数值模型(图1);2. 分情况模拟机械化双叠隧道的挖掘过程;3. 研究不同情况下的地面沉降,水平地面位移,以及隧道衬砌的法向位移、法向力、纵向力和弯曲力矩等。
重要结论:1. 新隧道施工对现有的隧道有很大的影响,最大影响出现在先挖上层隧道的情况下;2. 一般来说,上层隧道的挖掘会比下层隧道产生更大的地面沉降;3. 下层隧道产生的法向力总是比上层隧道大;4. 在多数情况下,下层隧道产生的法向位移和弯曲力矩要比上层隧道小。
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DOI:
10.1631/jzus.A1400117
CLC number:
U451
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On-line Access:
2024-08-27
Received:
2023-10-17
Revision Accepted:
2024-05-08
Crosschecked:
2014-10-29