非轴对称外荷载条件下深埋隧洞变形特征研究

    Research on deformation and failure characteristics of deep buried caverns under non-axisymmetric external load conditions

    • 摘要: 为研究非轴对称外荷载条件的地下典型隧洞变形特征,基于圆形隧洞、非圆形隧洞的解析解,总结了洞壁应力、位移的影响因子;采用数值模拟,建立变侧压系数下三种非圆形隧洞离散元模型,得到隧洞岩体的应力、位移、破裂分布模式。研究结果表明:对于圆形隧洞,洞壁上应力差最大,最易发生破坏;总应力集中系数变化特征为变量侧压系数的单调函数;径向位移对围岩稳定性起主导作用。对于非圆形隧洞,侧压系数的增大,围岩的主导位移由垂直位移转变为水平位移;侧压系数从0.5→1.0→2.0变化时,最大主应力由边墙转移至拱顶,最小主应力始终集中在边墙洞周;同外荷载、同侧压系数时,城门洞隧洞围岩破坏形式简单,塑性区半径小,矩形隧洞围岩破坏形式复杂,塑性区半径大,椭圆形隧洞在侧压系数小于1时边墙塑性区半径最大。

       

      Abstract: To study the deformation characteristics of typical underground tunnels under non-axisymmetric external load conditions, based on the analytical solutions of circular and non-circular tunnels, the influencing factors of tunnel wall stress and displacement are summarized. Using numerical simulation, establishes three discrete element models of non-circular caverns under variable lateral pressure coefficients, and obtains the stress, displacement, and fracture distribution patterns of the cavern rock mass. The results indicate that for circular caverns, the stress difference on the wall is the greatest and they are most prone to failure. The variation of total stress concentration coefficient is a monotone function of variable lateral pressure coefficient .The radial displacement plays a leading role in the stability of surrounding rock. For non-circular caverns, the dominant displacement of surrounding rock changes from vertical displacement to horizontal displacement when the pressure measurement coefficient increases. When the side pressure coefficient changes from 0.5 to 1.0 to 2.0, the maximum principal stress is transferred from the side wall to the vault, and the minimum principal stress is always concentrated around the hole in the side wall. Under the same external load and pressure coefficient, the surrounding rock failure form of Chengmen cave is simple and the plastic zone radius is small, the surrounding rock failure form of rectangular cave is complex and the plastic zone radius is large, and the plastic zone radius of oval cave is maximum when the side pressure coefficient<1.

       

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