考虑不利结构面影响的深埋隧道围岩坍塌破坏机理研究
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长沙理工大学 土木与环境工程学院

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国家自然科学(52278395)


Study on the failure mechanism of rock mass for deep-buried tunnels with the consideration of unfavorable structural planes
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    摘要:

    目前,节理裂隙发育岩体中考虑不利结构面影响的隧道围岩坍塌破坏发生机理和破坏模式研究尚不透彻。为了研究不利结构面对深埋隧道围岩稳定性的影响,采用空间离散技术构建隧道拱顶与拱肩处存在不利结构面的隧道围岩塌落破坏机制。基于Hoek-Brown破坏准则与极限分析上限定理推导出考虑不利结构面影响的围岩安全系数目标函数,通过优化计算得到极限状态下的围岩安全系数上限解与塌落面形状。依托肇庆虎山隧道工程,构建隧道拱肩处存在不利结构面的数值模型,获得施工扰动诱发隧道围岩安全系数和塌落面数值解并将其与本文理论解进行对比,验证理论计算结果的有效性。参数分析表明:顶部与拱肩存在不利结构面的围岩安全系数随地质强度指标GSI和岩石材料常数mi的增大而增大。围岩坍塌范围随着GSI的增大而增大,随着mi的增大而减小。

    Abstract:

    Presently, the studies of collapse mechanism and failure mode of tunnel surrounding rock considering the influence of unfavorable structural planes in jointed fractured rock mass are not well understood. To investigate the effect of the unfavorable structural planes on the stability of deep-buried tunnel rock mass, failure mechanisms of the rock mass with unfavorable structural planes existing at roof and spandrel of the tunnel are constructed by using the spatial discrete technology. Based on the Hoek-Brown failure criterion and the upper bound theorem of limit analysis, the objective function of the rock mass safety factor with the consideration of unfavorable structural planes is derived. The upper bound solution of the rock mass safety factor and the collapse range under the limit state are obtained through optimization calculation. Taking Hushan Tunnel as engineering background, a numerical model of the rock mass with unfavorable structural planes is constructed and numerical results of the rock mass safety factor and the collapse range of the rock mass is obtained. By comparing the theoretical results with the numerical results, the validity of the theoretical method proposed in this paper is verified. Parameter analysis indicates that the safety factor of the rock mass with unfavorable structural planes at roof and spandrel increases with the increase of geological strength index GSI and rock material constant mi. The collapse range of rock mass increases with the increase of GSI while decrease with the increase of mi.

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  • 收稿日期:2025-06-03
  • 最后修改日期:2025-07-11
  • 录用日期:2025-09-16
  • 在线发布日期: 2026-03-20
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