地震作用下非均质地层隧道掌子面稳定性上限分析
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1. 华东交通大学 土木建筑学院

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国家自然科学基金项目


Upper Bound Analysis of Tunnel Face Stability in Non-homogeneous Strata under Seismic Action
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    摘要:

    为探究复杂工况下隧道掌子面稳定性,基于线性Mohr-Coulomb准则,利用空间离散与“点生点”技术,构建综合考虑土体非均质及地震效应的三维主动破坏模型,引入非均质系数表征黏聚力随深度线性分布特征,推导极限支护力上限解析解并通过MATLAB优化求解。对比验证表明该方法计算精度良好。研究结果显示:地震效应显著降低掌子面稳定性,极限支护力随水平地震加速度系数及竖向地震比例系数增大而提高,且竖向地震对支护力的相对增幅具有非线性放大特征;土体非均质性有利于增强自稳能力,极限支护力与非均质系数呈显著线性负相关,充分利用深部土体强度增长特性可优化支护设计;然而强震作用会削弱土体非均质性带来的安全收益,高烈度区工程设计需提高抗震冗余度。

    Abstract:

    To investigate tunnel face stability under complex working conditions, a three-dimensional active failure model incorporating soil non-homogeneity and seismic effects is constructed based on the linear Mohr-Coulomb criterion, utilizing spatial discretization and "point-generation" techniques. A non-homogeneity coefficient is introduced to characterize the linear distribution of cohesion with depth, and an analytical upper-bound solution for the limit support pressure is derived and optimized via MATLAB. Comparative validation demonstrates that the proposed method possesses good calculation accuracy. The results indicate that seismic effects significantly reduce tunnel face stability; the limit support pressure increases with the rise of the horizontal seismic acceleration coefficient and the vertical seismic proportionality coefficient, with the vertical seismic action exhibiting a non-linear amplification effect. Conversely, soil non-homogeneity contributes to enhancing self-stability capabilities; the limit support pressure shows a significant linear negative correlation with the non-homogeneity coefficient, suggesting that fully utilizing the strength increase characteristics of deep soil can optimize support design. However, strong seismic action weakens the safety benefits derived from soil non-homogeneity, necessitating increased seismic redundancy in engineering designs for high-intensity earthquake zones.

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  • 收稿日期:2026-01-23
  • 最后修改日期:2026-03-24
  • 录用日期:2026-04-13
  • 在线发布日期: 2026-06-22
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