岩土力学 ›› 2026, Vol. 47 ›› Issue (8): 2709-2719.doi: 10.16285/j.rsm.2025.0839CSTR: 32223.14.j.rsm.2025.0839

• 基础理论与实验研究 • 上一篇    下一篇

基于Hoek-Brown等效参数的超前支护下非圆形巷道开挖面稳定性极限上限分析

王平1,吴浩田2,赵晓峰1,徐睿1,刘任哲1,单仁亮2   

  1. 1. 河南神火兴隆矿业有限责任公司,河南 许昌 461000;2.中国矿业大学(北京) 力学与土木工程学院,北京 100083
  • 收稿日期:2025-08-02 接受日期:2026-01-26 出版日期:2026-08-11 发布日期:2026-08-17
  • 通讯作者: 吴浩田,男,2000年生,博士研究生,主要从事地下煤炭开采方面的工作。E-mail:835285659@qq.com
  • 作者简介:王平,男,1984年生,硕士研究生,高级工程师,主要从事煤炭开采方面的工作。E-mail:16639558817@163.com
  • 基金资助:
    国家自然科学基金(No. 52274148)。

Upper-bound limit analysis of excavation face stability in non-circular roadways with advanced support based on the Hoek-Brown equivalent parameters

WANG Ping1, WU Hao-tian2, ZHAO Xiao-feng1, XU Rui1, LIU Ren-zhe1, SHAN Ren-liang2   

  1. 1. Henan Shenhuo Xinglong Mining Co., Ltd., Xuchang, Henan 461000, China; 2. School of Mechanics and Civil Engineering, China University of Mining and Technology, Beijing 100083, China
  • Received:2025-08-02 Accepted:2026-01-26 Online:2026-08-11 Published:2026-08-17
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (52274148).

摘要: 在极软煤巷掘进过程中,常采用超前支护确保施工安全。为了探究超前支护下开挖面的稳定性,基于Hoek-Brown准则,在考虑超前支护影响的基础上,构建了斜柱体-对数螺旋开挖面共同破坏模型。利用极限分析上限法、强度折减法以及几何等代法,推导出适用于非圆形巷道开挖面的稳定安全系数目标函数,并进行稳定安全系数计算,将计算结果与现有研究成果进行对比分析,验证了本文计算方法的合理性与适用性,同时分析了影响开挖面稳定安全系数的各个因素。研究结果表明:本文计算方法在各应力区间均能更合理地反映实际围岩的非线性破坏特性;围岩内摩擦角的增大对巷道开挖面稳定性提升最为显著;超前小导管的截面积增大和环间距减小均有助于增强开挖面稳定性;开挖面设置锚杆是维持巷道开挖面稳定性的关键支护手段;不同几何等代法对非圆形巷道开挖面稳定安全系数的计算结果差异明显。

关键词: Hoek-Brown准则, 极限上限分析法, 稳定安全系数, 开挖面稳定性

Abstract: During the excavation of extremely soft coal roadways, advanced support techniques are commonly employed to ensure construction safety. To investigate the stability of the excavation face under such advanced support conditions, this study develops a combined failure model comprising an inclined prismatic body and a logarithmic spiral surface. This model is developed based on the Hoek-Brown failure criterion and accounts for the effects of advanced support mechanisms. By integrating the upper-bound limit analysis method, strength reduction approach, and geometric equivalence techniques, an objective function for stability safety factor applicable to non-circular roadway faces is derived. A computational program is then implemented to evaluate the stability safety factor, and the results are compared with those from existing studies to validate the rationality and applicability of the proposed method. Furthermore, the influence of various factors on excavation face stability is systematically analyzed. The findings reveal that the proposed method provides a more accurate representation of the nonlinear failure behavior of surrounding rock across different stress zones. Among the influencing parameters, the internal friction angle of the surrounding rock exerts the most significant effect on enhancing excavation face stability. Additionally, increasing the cross-sectional area of advanced pipes and reducing their ring spacing both contribute to improved face stability. The installation of face bolts proves to be a critical support measure for maintaining excavation face stability. Notably, different geometric equivalence methods yield substantially varied results in computing the stability safety factor for non-circular roadway faces.

Key words: Hoek-Brown criterion, upper-bound limit analysis method, stability safety factor, excavation face stability

中图分类号: TU 457
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