长江科学院院报 ›› 2012, Vol. 29 ›› Issue (12): 46-52.DOI: 10.3969/j.issn.1001-5485.2012.12.010

• 岩土工程 • 上一篇    下一篇

滑坡渐进破坏运动过程的颗粒流仿真模拟

王 宇1,2,李 晓1,王声星1,2,侯文诗1,2   

  1. 1.中国科学院地质与地球物理研究所 工程地质力学重点实验室,北京 100029;2.中国科学院大学,北京 100049
  • 收稿日期:2011-10-17 修回日期:2011-11-18 出版日期:2012-12-01 发布日期:2012-12-18
  • 作者简介:王 宇(1985-),男,河北沧州人,博士研究生,主要从事地质灾害与岩石力学等方面的学习研究
  • 基金资助:

    国家自然科学基金资助项目(41027001);国家重点基础研究发展计划(973)项目(2009CB724605)

PFC Simulation of Progressive Failure Process of Landslide

WANG Yu1,2, LI Xiao1, WANG Sheng-xing1,2, HOU Wen-shi1,2   

  1. 1.Key Laboratory of Mechanics in Engineering Geology, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China; 2. University of Chinese Academy of Sciences, Beijing 100049, China
  • Received:2011-10-17 Revised:2011-11-18 Online:2012-12-01 Published:2012-12-18

摘要: 采用颗粒流离散元模拟滑坡的变形破坏全过程,不需要假定滑动面的位置和形状,颗粒根据所受到的接触力调整其位置,最终从抗剪强度最弱面发生剪切破坏。白河滑坡是受强降雨影响诱发的上部顺层、下部微切层的大型古基岩滑坡,滑坡的发生是其独特内外因共同作用的结果。据现场调查资料,总结了滑坡的成因与形成机制。运用基于离散元法的颗粒流(PFC)程序,引入平行粘结模型,通过数值模拟,确定滑带土细观参数与宏观力学性质的关系;据此建立滑坡模型;然后,运用颗粒流离散元法对滑坡运动渐进全过程进行数值模拟,对滑坡不同关键部位进行位移、孔隙率变化及应变监测,阐明其渐进发展过程,明确其时空演化规律。模拟结果表明:上部的土体沿基岩面先出现开裂,导致中部滑体产生剪胀,对下部古滑体产生推挤作用,导致新老崩积堆积区及白河中学食堂地区的失稳,形成整体滑动。通过对白河滑坡发生→发展→破坏的动态演化模拟,可为工程决策提供理论依据。

关键词: 滑坡, 颗粒流(PFC), 数值模拟, 渐进破坏, 平行粘结模型

Abstract: The Baihe landslide is a large ancient bedrock landslide induced by heavy rainfall, with the upper part of parallel layers and the lower part of slightly incised layers. According to field investigation, the causes and formation mechanism of the landslide are summarized. The particle flow code (PFC2D) program is employed and the parallel-bond model is introduced to determine the relation between micro-parameters and macro-mechanical properties of soils in the sliding zone through biaxial compression numerical tests. In subsequence, the landslide geological model is established and  the progressive process of landslide is simulated numerically by the particle-flow discrete element method. The displacement, porosity and strain at some key parts of the landslide are monitored. The simulation results show that crack occurs first in the soils in the upper part along the bedrock plane, which leads to shear dilatancy of slip mass in the middle part, thus pushing the ancient slip mass in the lower part, and finally causes instability of the whole accumulation. The position and shape of sliding plane don’t need to be assumed, and the particles adapt their positions according to contact forces, and finally shear failure happens at the plane which has the smallest shear strength. The simulation could provide theoretical basis for decision-making of the project.

Key words: landslide, particle flow code (PFC), numerical simulation, progressive failure, parallel-bond model

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