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金属矿山 ›› 2026, Vol. 55 ›› Issue (6): 68-76.

• 采矿工程 • 上一篇    下一篇

基于Mohr-Coulomb准则考虑围岩剪胀与损伤的圆形洞室弹塑性分析

潘 登,刘英杰,宋志超,高 星,张迪迪   

  1. 山东东方路桥建设有限公司,山东 济南 250000
  • 出版日期:2026-07-15 发布日期:2026-07-08
  • 作者简介:潘 登(1988—),男,工程师。
  • 基金资助:
    山东高速交通建设集团有限公司科技项目(编号:SGJJ-2024-C-003)。

Elastoplastic Analysis of Circular Cavern Considering Dilatancy and Damage of Surrounding Rock Based on Mohr-Coulomb Criterion

PAN Deng,LIU Yingjie,SONG Zhichao,GAO Xing,ZHANG Didi   

  1. Shangdong Dongfang Higway and Bridge Construction Co.,Ltd.,Ji′nan 250000,China
  • Online:2026-07-15 Published:2026-07-08

摘要: 在圆形洞室开挖后的围岩稳定性分析中,如何同时考虑围岩峰后剪胀效应与损伤演化及其耦合影响的 力学机制尚不清晰。基于Mohr-Coulomb准则,构建了耦合剪胀与损伤的弹塑性分析模型,通过塑性势函数建立了剪 胀角与塑性应变的关系,进而推导出以塑性体积应变为表征的损伤演化方程,从而将围岩的峰后应变软化特性与剪 胀引起的体积膨胀及损伤发展有机联系起来。针对塑性区控制方程的非线性难题,采用了有限差分法进行分层求 解,提出了一个半数值半解析的应力—应变—损伤迭代计算流程,进而可求解得到围岩的应力、应变及损伤变量的分 布。研究结果表明:所建立的耦合模型通过了案例验证,相较于传统的强度参数线性软化方法,本模型基于物理机制 (体积膨胀导致损伤)描述峰后软化行为,更具一般性与合理性;损伤参数β和剪胀角ψ的增大会加剧洞壁损伤,并导 致塑性区与松动圈范围显著扩大,但两者均不影响围岩最大周向应力值;损伤参数β对围岩径向应力恢复至原岩应力 水平的速率具有显著影响,且β越大,恢复越慢,而剪胀角ψ对此恢复速率的影响可忽略不计。上述定量与定性结论 可为地下工程围岩稳定性评估与控制提供重要参考。

关键词: 剪胀效应 , 损伤演化 , Mohr-Coulomb准则 , 圆形洞室 , 松动圈

Abstract: In the stability analysis of the surrounding rock after the excavation of a circular cavern,the mechanical mech anism of how to simultaneously consider the postpeak shear expansion effect of the surrounding rock and the damage evolution and their coupled influence is not clear.Based on the Mohr-Coulomb criterion,an elastic-plastic analytical model coupling shear expansion and damage is constructed,and the relationship between the shear expansion angle and plastic strain is estab lished through the plastic potential function,and then the damage evolution equation characterized by plastic volumetric strain is derived,so as to organically link the post-peak strain softening characteristics of the surrounding rock and the volumetric ex pansion induced by shear expansion and the damage development.In order to solve the nonlinear problem of the controlling e quations in the plastic zone,the finite difference method is adopted for the hierarchical solution,and a semi-numerical and semi-analytical iterative stress-strain-damage computation process is proposed,which can be solved to obtain the distributions of the stress,strain and damage variables of the surrounding rock.The results show that: the established coupling model has been verified by cases,and compared with the traditional linear softening method with strength parameters,this model describes the post-peak softening behavior based on the physical mechanism (volume expansion leads to damage),which is more general and reasonable;the increase of damage parameter β and shear expansion angle ψ will exacerbate the damage of the cave wall and lead to a significant increase in the range of the plastic zone and the loosening circle,but neither of them affects the maximum peripheral However,neither of them affects the maximum circumferential stress value of the surrounding rock;the damage pa rameter β has a significant effect on the rate of recovery of radial stress to the original rock stress level,and the larger β is,the slower the recovery is,and the effect of the shear expansion angle ψ on the recovery rate is negligible.The above quantitative and qualitative conclusions can provide important references for the assessment and control of underground engineering rock stability.

Key words: shear dilation effect,damage evolution,Mohr-Colomb criterion,circular cavern,loose circle

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