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田宁, 陈健, 田铠玮, 周宁希, 黄珏皓. 基于三维随机场的地表堆载引发运营隧道变形分析[J]. 岩土工程学报, 2022, 44(S2): 120-124. DOI: 10.11779/CJGE2022S2026
引用本文: 田宁, 陈健, 田铠玮, 周宁希, 黄珏皓. 基于三维随机场的地表堆载引发运营隧道变形分析[J]. 岩土工程学报, 2022, 44(S2): 120-124. DOI: 10.11779/CJGE2022S2026
TIAN Ning, CHEN Jian, TIAN Kai-wei, ZHOU Ning-xi, HUANG Jue-hao. Deformation of tunnels in service induced by ground surface surcharge based on 3D random field[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(S2): 120-124. DOI: 10.11779/CJGE2022S2026
Citation: TIAN Ning, CHEN Jian, TIAN Kai-wei, ZHOU Ning-xi, HUANG Jue-hao. Deformation of tunnels in service induced by ground surface surcharge based on 3D random field[J]. Chinese Journal of Geotechnical Engineering, 2022, 44(S2): 120-124. DOI: 10.11779/CJGE2022S2026

基于三维随机场的地表堆载引发运营隧道变形分析

Deformation of tunnels in service induced by ground surface surcharge based on 3D random field

  • 摘要: 随着城市基础设施的快速发展和轨道交通的进一步开发,已有运营盾构隧道不可避免地会受到周围施工的影响,邻近施工将引起运营隧道周围土体的应力重分布,从而使隧道衬砌结构产生额外的附加变形。在三维空间变异性土体中研究了地表堆载对下方既有运营盾构隧道结构变形的影响,采用有限元方法和随机场理论对盾构隧道的拱顶沉降进行了概率分析,揭示了土体参数的波动范围和变异系数对盾构隧道轴向变形超标概率的影响规律,最后根据大量随机分析结果提出了一种简化的等效确定性分析方法。相关成果可以为在类似工程问题中考虑土体参数空间变异性提供一种简化计算方法。

     

    Abstract: With the rapid development of urban infrastructure and the further development of rail transit, the existing shield tunnels will inevitably be affected by the surrounding construction. The adjacent construction will cause the stress redistribution of the soil around the existing tunnels, thus causing additional deformation of the tunnels. The influences of ground surface surcharge on the deformation of the tunnels in service are studied in the three-dimensional spatially variable soil. The probabilistic analysis of the vertical settlement of the shield tunnels is investigated by using the finite element method and the random field theory. The influences of the scale of fluctuation and coefficient of variation on the probability of failure of the tunnel deformation are revealed as well. A simplified equivalent deterministic analysis method is proposed based on the random analysis results. The conclusions provide a simplified method for considering the spatial variability of soil parameters in similar engineering problems.

     

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