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隧道建设(中英文) ›› 2023, Vol. 43 ›› Issue (S1): 145-153.DOI: 10.3973/j.issn.2096-4498.2023.S1.017

• 研究与探索 • 上一篇    下一篇

基于CVISC模型的深埋圆硐黏弹塑性解

鲁义强1 2, 史博然2, 贺飞1, 袁勇2 *, 姚旭朋2, 张姣龙2   

  1. 1. 中铁工程装备集团, 河南 郑州 450000 2. 同济大学土木工程学院, 上海 200092
  • 出版日期:2023-07-31 发布日期:2023-08-28
  • 作者简介:鲁义强(1989—),男,河南开封人,2020年毕业于四川大学,土木工程专业,博士(后),高级工程师,主要从事TBM设计和隧道防灾工作。Email: yiqianglu007@163.com。*通信作者: 袁勇, Email: yuany@tongji.edu.cn。

ViscousElasticPlastic Solution of DeepBuried Circular Opening Based on CVISC Model

LU Yiqiang1, 2, SHI Boran2, HE Fei1, YUAN Yong2, *, YAO Xupeng2, ZHANG Jiaolong2   

  1. (1. China Railway Engineering Equipment Group Co., Ltd., Zhengzhou 450000, Henan, China; 2. College of Civil Engineering, Tongji University, Shanghai 200092, China)
  • Online:2023-07-31 Published:2023-08-28

摘要: 为解决高地应力围岩挤压型大变形问题,根据以往挤压型大变形隧道案例,选取适用于泥岩、砂岩、粉质砂岩等各向同性软岩,利用Burgers模型和M-C塑性体串联形成的CVISC黏弹塑性模型,结合CVISC模型黏弹性元件和弹塑性元件相互独立的特性,将围岩径向位移分为瞬时弹塑性阶段位移和黏弹性阶段位移,分别推导塑性区和黏弹性区径向位移解析解,叠加组合形成围岩位移分布解析解,分析围岩径向位移场、应力场随时间变化规律,全面描述硐室变形规律。借助FLAC3D和相关文献理论解答验证其适用性,在此基础上进行长期变形的参数敏感性分析,结果表明各阶段最关键的3个参数分别是内摩擦角、黏聚力和弹性模量,蠕变参数仅在其控制阶段具有显著敏感度。

关键词: 岩石隧道, 挤压型大变形, 黏弹塑性解析, 有限差分法

Abstract: To control the large squeezing deformation of surrounding rocks with high geostress, the CVISC viscoelasticplastic model formed by the Burgers model and MC plastic body in series is selected for isotropic soft rocks such as mudstone, sandstone, and siltstone based on the previous tunnel cases with large squeezing deformation. The radial displacement of the surrounding rock is divided into instantaneous elasticplastic phase displacement and viscoelastic phase displacement using the independent properties of viscoelastic and elasticplastic elements of the CVISC model. The analytical solutions of radial displacement in the plastic and viscoelastic zones are derived respectively, and the superimposed combination forms the analytical solution of displacement distribution in the surrounding rock. Following this, the radial displacement and stress fields of the surrounding rock are analyzed as a function of time, and the deformation law of the opening is described. The applicability of model is verified with the help of FLAC3D and the theoretical solution of related literature. On this basis, parametric sensitivity analysis of longterm deformation is carried out. The results show that the three most critical parameters in each phase are internal friction angle, cohesion, and Youngs modulus, and the creep parameter has significant sensitivity only in its control phase.

Key words: rock tunnels, large squeezing deformation, viscouselasticplastic analysis, finite difference method