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Analysis of the Compressibility Effect of Overburden in a Deep Shield Tunnel Based on the Effect of the Pressure Arch

机译:基于压力拱效应的深屏蔽隧道覆盖层压缩效应分析

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With the continuous improvement of the planning system for urban subway construction, shield tunnels are being more frequently constructed, and thus, the floating problem of shield tunnels in construction has been paid increasingly more attention. In view of this, in this paper, with the combination of numerical simulation and theoretical analysis, the problem of floating segments compressing the overburden in the deep shield tunnel is discussed. The influential factors of the pressure arch effect are analysed using numerical simulation, the compressive displacement of soil in the plastic zone is investigated in a focused manner based on the pressure arch effect, and the problem of floating segments that the Mindlin solution is applied to under the actions of distributed force and concentrated force is solved. The results show the following: (1) the displacement of the segment is composed of the shield tail gap, the compressive displacement of the soil, and the translational displacement of the soil; (2) the intensity of the pressure arch effect is interactively influenced by the thickness-diameter ratio and the soil properties; (3) the compressive displacement of the soil mass accounts for a larger proportion of floating segment-induced displacements; and (4) the perturbation influence calculation formula of the surrounding strata and the building structure is obtained based on the Mindlin solution.
机译:随着城市地铁施工规划系统的持续改进,盾牌隧道正在更频繁地构建,因此,施工中屏蔽隧道的浮动问题越来越受到关注。鉴于此,本文讨论了数值模拟和理论分析的组合,讨论了压缩深屏蔽隧道中覆盖层的浮动区段的问题。使用数值模拟分析压力弓效应的影响因素,以基于压力拱效应的聚焦方式研究了塑料区中土的压缩位移,以及浮雕溶液应用于下的浮动区段的问题解决了分布式力和集中力的作用。结果表明以下:(1)段的位移由盾尾隙,土壤的压缩位移和土壤的翻译位移组成; (2)压力弓效应的强度受到厚度直径比和土壤性质的互动影响; (3)土壤质量的压缩位移占浮动分段诱导的位移的较大比例; (4)基于Mindlin溶液获得周围地层的扰动影响计算公式和建筑结构。

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