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曹平, 李好月. 深部高侧压巷道围岩失稳机理及控制对策[J]. 岩土工程学报, 2016, 38(12): 2262-2271. DOI: 10.11779/CJGE201612015
引用本文: 曹平, 李好月. 深部高侧压巷道围岩失稳机理及控制对策[J]. 岩土工程学报, 2016, 38(12): 2262-2271. DOI: 10.11779/CJGE201612015
CAO Ping, LI Hao-yue. Instability mechanism and control measures of surrounding rock in deep tunnel under high lateral pressures[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(12): 2262-2271. DOI: 10.11779/CJGE201612015
Citation: CAO Ping, LI Hao-yue. Instability mechanism and control measures of surrounding rock in deep tunnel under high lateral pressures[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(12): 2262-2271. DOI: 10.11779/CJGE201612015

深部高侧压巷道围岩失稳机理及控制对策

Instability mechanism and control measures of surrounding rock in deep tunnel under high lateral pressures

  • 摘要: 针对金川矿山958中段出现的巷道破坏现象,运用理论分析、力学推导、数值计算、工程试验等方法,模拟不同侧压下巷道围岩变形过程,揭示围岩失稳机制及支护失效机理,探究高侧压巷道稳定控制对策,提出“拱梁联合支护”方案,完善锚固作用下“围岩承压拱”计算模式,构建“底板—桁架梁”力学模型,并通过解析微分控制方程进行支护参数反演。调查研究表明,巷道顶底板变形比重与侧压系数呈非线性正相关,围岩受力状态及位移形变随变化;高水平构造应力、骤变部位集中应力是低相对强度围岩失稳和高关联度支护体失效的主要诱因;兼顾局部和整体强度关系、改善不良应力状态、增强围岩承载能力为高侧压巷道稳定性控制的关键;锚杆应力维体与围岩相互作用形成承压拱可分消应力作用;底板桁架梁横撑底脚,减弱两帮向内收敛挤压趋势。监测结果显示,巷道变形速率减缓和变形幅度降低,整体稳定得到控制。

     

    Abstract: Aiming at the destructive phenomenon of the 958 horizon of Jinchuan Mine, through theoretical analysis, mechanical calculation, numerical simulation and field investigation, the deformation process of the surrounding rock under different lateral pressures is simulated, the instability mechanism of the surrounding rock and the failure mechanism of support are revealed, and the control measures of stable tunnel under high lateral pressures are discussed. The scheme of combined arch-beam and support is proposed, calculation of pressure arch of the surrounding rock is improved, and the mechanical model for floor-beam is established. Using the differential equation, the inversion of support parameters is performed. The results show that the proportion of roof-floor deformation is positively correlated to the coefficient of lateral pressure, and the stress state of the surrounding rock changes with the coefficient of lateral pressure. The high lateral pressure and the concentrated stress are the primary causes for the instability of rock with low relative strength and the failure of support with high correlation. Considering the overall and partial strengths, improving the poor stress state and enhancing the bearing capacity of the surrounding rock are the key to controlling the stabilization of tunnel. The interaction between the stress of bolt and the surrounding rock which forms bearing arch can mitigate the stress. The floor-beam braces the footing and weakens the extrusion trend by the two sides. The monitoring results show that the deformation rate and the range of tunnel decrease, and the overall stability of tunnel is controlled.

     

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