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Primary Investigation on Equivalent Anchoring Method of Jointed Rock Mass Tunnel and Its Engineering Application

机译:关节岩体隧道等效锚固方法的初步研究及其工程应用

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摘要

Rock bolts, one of the main support structures of the tunnel, can improve the stress state and mechanical properties of the surrounding rocks. The rock bolts are simulated by bar or beam elements in present numerical calculations for most 2D tunnel models. However, the methods of simulating rock bolt in three-dimensional models are rarely studied. Moreover, there are too many rock bolts in the long-span tunnel, which are hardly applied in the 3D numerical model. Therefore, an equivalent anchoring method for bolted rock masses needs to be further investigated. First, the jointed material model is modified to simulate the anisotropic properties of surrounding rock masses. Then, based on the theoretical analysis of rock bolts in reinforcing mechanical properties of the surrounding rock masses, the equivalent anchoring method of the jointed rock mass tunnel is numerically studied. The equivalent anchoring method is applied to the stability analysis of a diversion tunnel in Western China. From the calculation results, it could be found that the reinforcement effect of rock bolts could be equivalently simulated by increasing the mechanical parameter value of surrounding rocks. For the jointed rock mass tunnel, the cohesion and internal friction angle of the surrounding rocks are improved as 1.7 times and 1.2 times of the initial value, which can simulate the reinforcement effect of rock bolts. Comparing with analytical results, the improved internal friction angle is nearly consistent with analytical result. The reinforcement effect of rock bolts is simulated obviously when the mechanical parameters of surrounding rocks are increased simultaneously. The engineering application shows that the equivalent anchoring method can reasonably simulate the effect of rock bolts, which can provide reference for stability analysis of three-dimensional tunnel simulations.
机译:岩石螺栓是隧道的主要支撑结构之一,可以提高周围岩石的应力状态和力学性能。岩石螺栓通过杆或梁元件模拟,以适用于大多数2D隧道模型的现有数值计算。然而,很少研究在三维模型中模拟岩石螺栓的方法。此外,在长跨度隧道中有太多岩石螺栓,这几乎不应用于3D数值模型。因此,需要进一步研究用于螺栓岩体的等效锚固方法。首先,改变关节材料模型以模拟周围岩体的各向异性特性。然后,基于岩石螺栓的理论分析加强了周围岩体的机械性能,在数值上研究了关节岩体隧道的等效锚定方法。等效锚定方法应用于中国西部转移隧道的稳定性分析。从计算结果来看,可以通过增加周围岩石的机械参数值等同模拟岩螺栓的增强效果。对于关节岩体隧道,周围岩石的内聚力和内部摩擦角度提高为初始值的1.7倍和1.2倍,这可以模拟岩石螺栓的加固效果。比较分析结果,改善的内部摩擦角与分析结果几乎一致。当周围岩石的机械参数同时增加时,显然模拟了岩石螺栓的加强效果。工程应用表明,等效锚定方法可以合理地模拟摇滚螺栓的效果,这可以为三维隧道模拟提供稳定性分析的参考。

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