考虑结构面影响的巷道围岩稳定性分析

    Stability analysis of roadway surrounding rock considering the influence of structural plane

    • 摘要: 针对倾斜岩层巷道非对称破坏现象,采用理论分析、FLAC3D数值模拟方法,研究了不同岩层结构面倾角、巷道不同位置影响下巷道承载能力及变形破坏规律,揭示了倾斜岩层巷道围岩非对称变形破坏机理。研究表明:不同岩层结构面倾角条件下巷道周边不同位置承载力不同,结构面的存在降低了巷道围岩的稳定性,当该位置剪应力大于抗剪强度时,就会发生滑移破坏;在巷道位置一定时,存在最不利的岩层结构面倾角βmin,当结构面的位置与βmin重合时,此时围岩承载力最弱,对巷道稳定性最不利。通过对巷道支护方案的优化,设计“锚网+36U型棚+锚索梁+注浆”复合支护方案,围岩变形得到了有效控制。

       

      Abstract: Aiming at the asymmetric failure phenomenon of inclined strata roadway, theoretical analysis and FLAC3D numerical simulation method are used to study the bearing capacity and deformation and failure law of roadway under the influence of different strata dip angles and different positions of roadway, and the asymmetric deformation and failure mechanism of surrounding rock of inclined strata roadway is revealed. The results show that the bearing capacity of different positions around the roadway is different under the condition of different strata dip angles. The existence of structural plane reduces the stability of surrounding rock of roadway. When the shear stress at this position is greater than the shear strength, slip failure will occur. When the position of the roadway is fixed, there is the most unfavorable strata dip angle βmin. When the position of the structural plane coincides with βmin, the bearing capacity of the surrounding rock is the weakest, which is the most unfavorable to the stability of the roadway. Through the optimization of the roadway support scheme, the design of “anchor net + 36 U shed + anchor cable beam + grouting” composite support scheme is designed, and the deformation of surrounding rock is effectively controlled.

       

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