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Thermo-chemo-mechanical assessment of support effectiveness during tunneling in squeezing conditions

机译:挤压条件下隧道掘进过程中支护效果的热化学机械评估

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摘要

Recently, the combination of shotcrete as the primary lining and of face reinforcement by means of fiber-glass dowels was successfully employed during tunnel excavation in squeezing conditions (e.g., in soft rocks under high overburden stress). In this paper, numerical results obtained from axisymmetric analyses considering the application of the shotcrete lining and the installation of fiber-glass dowels at the tunnel face are presented. In order to account for time-dependent processes in the ground, a viscoplastic material model was chosen. For the description of the mechanical behavior of shotcrete, a thermo-chemo-mechanical approach is employed. The obtained results provide insight into the ground-shotcrete interaction, the effect of face reinforcement by means of fiber-glass dowels, and the state of stress in the shotcrete lining. Moreover, the variation of ground properties allows evaluation of the loading and effectiveness of the employed support means for different geotechnical conditions.
机译:最近,在挤压条件下的隧道开挖过程中(例如,在高覆岩应力下的软岩中)成功地将喷浆混凝土作为主要衬砌与通过玻璃纤维销钉进行的面加固相结合。本文给出了轴对称分析的数值结果,考虑了喷浆衬砌的应用以及在隧道工作面安装玻璃纤维销钉的情况。为了解决地面中随时间变化的过程,选择了粘塑性材料模型。为了描述喷射混凝土的机械性能,采用了热化学机械方法。获得的结果为深入了解喷浆混凝土的相互作用,通过玻璃纤维销钉加固面的效果以及喷浆衬砌中的应力状态提供了见识。此外,地面特性的变化允许评估在不同岩土条件下所采用的支撑装置的负载和有效性。

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