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Structural response of existed metro tunnels to adjacent large-section pipe jacking construction

机译:相邻大型管道施工中存在的地铁隧道的结构响应

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摘要

A rectangular pedestrian underpass of 94.5m long, 7m wide and 4.3m high was constructed across the existed metro tunnels using pipe jacking method. The minimum distance from underpass bottom to tunnel crown was 4.5m. In order to investigate the effects of pipe jacking on existed underlying tunnels, the instruments were installed in the tunnels and structural responses were extensively monitored. Based on the field observations, the vertical displacement, horizontal displacement and diameter convergence of the tunnel were analyzed. The results indicate that in the whole pipe jacking process, the tunnel vertical displacement mainly goes through three different stages, namely, initial settlement stage, quick heave stage and steady heave stage. The horizontal displacement of ballast bed is much smaller than that of tunnel crown and is almost negligible. The tunnel was horizontally compressed and vertically stretched after pipe jacking construction. Pipe jacking construction has a greater effect on the tunnel structures just below the underpass than that beyond the width scope of underpass, whether it is vertical displacement, horizontal displacement or diameter convergence of the tunnel.
机译:矩形行人立交机为94.5米长,7米宽,4.3米高,在现有的地铁隧道中构造了使用管道升降方法。从地下通道底部到隧道冠的最小距离为4.5米。为了调查管道顶板对存在的底层隧道的影响,仪器安装在隧道中,广泛监测结构响应。基于现场观察,分析了隧道的垂直位移,水平位移和直径会聚。结果表明,在整个管道升降过程中,隧道垂直位移主要通过三个不同的阶段,即初始结算阶段,快速升降阶段和稳定的升降阶段。压载床的水平位移远小于隧道冠的水平,并且几乎可以忽略不计。隧道水平压缩和垂直拉伸后的管道施工后。管道轴施工对隧道结构的效果更大,远处的隧道结构大于地下通道的宽度范围,无论是垂直位移,水平位移或隧道直径融合。

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