盾构施工参数对叠落隧道侧穿建筑物的影响研究

Research on the Influence of Shield Tunneling Parameters on Buildings Side-passed by Overlapping Tunnels

  • 摘要:
    目的 分析叠落隧道后行线盾构施工参数(上部土仓压力、盾尾注浆压力)设置对既有建筑物的影响,以期为类似工程提供参考。
    方法 以长春地铁5号线硅谷大街站—繁荣路西站区间侧穿既有建筑物工程为背景,运用数值模拟方法分析建筑物沉降与应力分布随上部土仓压力及盾尾注浆压力变化而变化的规律,并结合现场监测数据进行了验证。
    结果及结论 增大上部土仓压力能够有效降低建筑物的沉降与倾斜度,且其减小幅度随着土仓压力的增大而逐渐减弱。过大的上部土仓压力会对建筑物产生不利的拉应力。与此同时,增加盾尾注浆压力也能减小建筑物的沉降和倾斜度,但效果不及上部土仓压力影响显著;此外,建筑物临近隧道轴线的长边受开挖扰动的影响最大,因此在实际施工过程中应给予重点关注。

     

    Abstract:
    Objective The influence of shield tunneling parameters (upper chamber and shield tail grouting pressures) for the subsequent line of overlapping tunnels on existing buildings is analyzed to provide a reference for similar projects.
    Method Based on the project of Guigu Street Station to Fanrong Road West Station section on Changchun Metro Line 5, which passes laterally alongside existing buildings, numerical simulation is employed to analyze the variation patterns of building settlement and stress distribution with changes in the upper soil chamber pressure and shield tail grouting pressure. The findings are verified against monitoring data.
    Result & Conclusion  Increasing the upper soil chamber pressure can effectively reduce building settlement and inclination, and the reduction range gradually diminishes with further chamber pressure increase. Excessive upper chamber pressure induces unfavorable tensile stress in buildings. Meanwhile, increasing the shield tail grouting pressure also reduces building settlement and inclination, but the effect is less significant compared to that of the upper chamber pressure. Furthermore, the long side of the building close to the tunnel axis is most affected by excavation disturbance and should be given priority attention during actual construction.

     

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