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隧道建设(中英文) ›› 2007, Vol. 27 ›› Issue (增刊): 174-178.DOI: A

• 研究与探索 • 上一篇    下一篇

互层岩体隧道开挖之个别元素法分析

郑富书,  黄灿辉,  李宏辉,  李国诚   

  1. 1.台湾大学土木工程学系教授|台北; 2.台湾大学土木工程学系博士班研究生|台北
  • 收稿日期:2007-06-12 出版日期:2007-08-10 发布日期:2010-04-20
  • 作者简介:郑富书,男|博士|现任教授|主要从事岩石力学、大地工程数值分析与工程地质研究方面的工作。 黄灿辉|男|博士|现任教授|主要从事岩石力学、隧道工程研究方面的工作。

Numerical Study of Tunnel Excavation under Interstratified Rock Mass
by Distinct Element Modeling

 ZHENG Fu-Shu,  Huang-Can-Hui,  Li-Hong-Hui,  Li-Guo-Cheng   

  1. 1. Professor,Department of Civil Engineering, National Taiwan University, Taipei;
    2.Doctoral Student, Department of Civil Engineering, National Taiwan University, Taipei
  • Received:2007-06-12 Online:2007-08-10 Published:2010-04-20

摘要:

 本研究采个别元素法为分析工具,以具键结特性之二维圆盘颗粒进行互层岩体隧道开挖分析。根据本研究建立之互层岩体单压试验模型,在层面倾角由0°变化至90°的条件下,模拟之单压强度与杨氏模数二者与层面倾角之关系,符合前人实验结果。
在隧道分析部份,本文先以均质等向线弹性材料之圆形孔洞应力分析进行模式验证,结果显示解析解与数值分析之应力等高线图分布一致。互层岩体隧道分析则是在不考虑衬砌与岩栓等支撑结构的前提下,仅先针对互层倾角的变化与材料力学参数的折减,对圆形开挖断面之影响进行数值模拟与结果探讨。

Abstract:

A particle flow code based on the distinct element method (DEM) was adopted to analyze the tunnel excavation under interstratified rock mass. For a parameters calibration, an unconfined compression test was modeling firstly, and the simulated results can reflect the influence of the dip angle on the unconfined compression strength and the Young's modulus. In addition, the numerical analysis of the stress around a circle excavation was compared with the analysis solution, and it indicates that the adopted model is suitable to analysis the excavation problem of a tunnel. Finally, a tunnel excavation under interstratified rock mass was simulated with the dip angle 0°,45°, and 90°, and the results show that the adopted model can imitate the failure and engineering problems during tunneling in Taiwan, such as squeezing, block falling, buckling and caving. 

Key words: distinct element method  , tunnel  , interstratified rock mass

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