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Numerical Analysis of Advanced Displacement in Construction Progress of Tunnel Excavation with Weak Surrounding Rock

机译:弱围岩隧道开挖施工进度提前位移的数值分析

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Analysis of advanced displacement in construction progress of tunnel excavation with weak surrounding rock is carried out by numerical method and comparison of model test result. In allusion to the problems of regional landslides and extruded large-deformation seriously impacting the stability of rock mass in construction process of large-section tunnel with weak surrounding rock, the elastic-plastic numerical simulation relying on Liangshui tunnel of Lan-Yu railroad is conducted on mechanical behaviors and deformation steric effect of tunnel construction and the calculation results are compared with the modeling data. The research results show that: the steric effect of excavation face is the dominant factor in the incidence of working face and the stress of surrounding rocks gradually releases from excavation face; the range of 0.5~l times the cave diameter around rock mass in front of working face is the disturbance range and the key area of stabilization and reinforcement for wake surrounding rock. According to the analysis and construction practice, the supporting structure of large-section tunnel with weak surrounding rock should be established as soon as possible to control the displacement change of surrounding rock in the range of load-bearing ring, reduce disturbance and improve the self-bearing capability of surrounding rock. Because of the distinct excavation steric effect of weak surrounding rock, the secondary lining structure must be established in time to bear the later pressure and restrict the large displacement of surrounding rock. The research results can provide reliable basis for engineering stability control of analogous tunnels.
机译:通过数值方法和模型试验结果的比较,对弱围岩隧道开挖施工中的提前位移进行了分析。针对软弱围岩大断面隧道施工过程中局部滑坡,大变形挤压严重影响岩体稳定性的问题,基于兰榆铁路凉水隧道进行了弹塑性数值模拟。分析了隧道施工的力学行为和变形空间效应,并将计算结果与建模数据进行了比较。研究结果表明:开挖工作面的空间效应是影响工作面发生的主要因素,围岩应力从开挖工作面逐渐释放。工作面前岩体周围洞穴直径的0.5〜l倍范围是扰动范围,是尾围岩稳定加固的关键区域。根据分析和施工实践,应尽快建立围岩弱的大断面隧道支护结构,以控制围岩在承重环范围内的位移变化,减少扰动,提高自身安全性。围岩的承载能力。由于软弱围岩具有明显的开挖空间效应,因此必须及时建立辅助衬砌结构,以承受较高的压力并限制围岩的大位移。研究结果可为类似隧道的工程稳定性控制提供可靠的依据。

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