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Study on support time in double-shield TBM tunnel based on self-compacting concrete backfilling material

机译:自密实混凝土回填材料的双盾TBM隧道支护时间研究

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Double-shield tunnel boring machine (TBM) typically supports surrounding rock structures using precast lining segments, pea-gravel backfilling and grouting, which can provide full play for the self-bearing capacity of surrounding rock. However, the risk of TBM jamming is increased by a lack of timely support. We propose a support method using self-compacting concrete backfilling material (SCCBM) instead of pea-gravel backfilling and grouting. In this paper, based on simulations of a TBM construction process, the support time and mechanical properties of the SCCBM are analysed. The deformation characteristics of surrounding rock are simulated using the viscoplastic creep model based on the internal variable thermodynamics theory. Creep parameters are obtained through the inversion analysis of displacement data collected at a construction site. The age-hardening process of SCCBM is simulated using the Mohr-Coulomb criterion, whose mechanical parameters change over time. Surrounding rock deformation, support system stress, yield region, surrounding rock stability, and the effects of the age-hardening rate of SCCBM are analysed. Additionally, the optimal supporting time is determined by comprehensively analysing surrounding rock deformation and supporting system stress. Overall, backfilling SCCBM with an optimal supporting time can not only reduce the deformation of surrounding rock and risk of TBM jamming, but also enhance the stability of surrounding rock.
机译:双盾隧道掘进机(TBM)通常使用预制衬砌段,豌豆砾石回填和灌浆来支撑围岩结构,从而充分发挥围岩的自承能力。但是,由于缺乏及时的支持,增加了TBM阻塞的风险。我们提出一种使用自密实混凝土回填材料(SCCBM)代替豌豆砾石回填和灌浆的支撑方法。本文基于TBM施工过程的模拟,分析了SCCBM的支撑时间和力学性能。基于内变热力学理论,采用粘塑性蠕变模型模拟围岩的变形特征。通过对在建筑工地收集的位移数据进行反演分析来获得蠕变参数。使用Mohr-Coulomb准则模拟SCCBM的时效硬化过程,其力学参数随时间变化。分析了围岩变形,支护体系应力,屈服区,围岩稳定性以及SCCBM的时效硬化率的影响。此外,通过综合分析围岩变形和支撑系统应力来确定最佳支撑时间。总的来说,以最佳的支撑时间回填南北海涂块岩不仅可以减少围岩的变形和TBM堵塞的风险,而且可以提高围岩的稳定性。

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