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基于广义Hoek-Brown非线性破坏准则的节理岩体地基承载力研究
引用本文:师林,朱大勇,沈银斌.基于广义Hoek-Brown非线性破坏准则的节理岩体地基承载力研究[J].岩石力学与工程学报,2013,32(Z1):2764-2771.
作者姓名:师林  朱大勇  沈银斌
作者单位:(1. 合肥工业大学 土木与水利工程学院,安徽 合肥 230009;2. 安徽土木工程结构与材料省级实验室,安徽 合肥 230009)
基金项目:教育部博士点基金资助项目(20090111110014);国家自然科学基金资助项目(51078123)
摘    要: 针对节理岩体非线性破坏特征,发展基于Hoek-Brown破坏准则的临界滑动场理论进行节理岩体地基承载力的计算。首先将Hoek-Brown准则的剪切强度逐点等效到Mohr-Coulomb强度线上,求得每点的瞬时内摩擦角和瞬时黏聚力;在此基础上,改进基于Mohr-Coulomb准则的临界滑动场理论,建立新的迭代算法,将Hoek-Brown强度准则与临界滑动场理论结合起来,求解被动土压力和地基承载力。同时,综合分析GSI和mi值对地基承载力的影响。算例对比分析结果表明,该方法能迅速准确地确定节理岩体地基最危险破坏滑面并得到相应的地基极限承载力值。

关 键 词:岩石力学地基承载力临界滑动场Hoek-Brown非线性破坏准则
收稿时间:2011-08-08;

STUDY OF BEARING CAPACITY OF JOINED ROCK MASS FOUNDATION BASED ON GENERALIZED HOEK-BROWN NONLINEAR FAILURE CRITERION
SHI Lin,ZHU Dayong,SHEN Yinbin.STUDY OF BEARING CAPACITY OF JOINED ROCK MASS FOUNDATION BASED ON GENERALIZED HOEK-BROWN NONLINEAR FAILURE CRITERION[J].Chinese Journal of Rock Mechanics and Engineering,2013,32(Z1):2764-2771.
Authors:SHI Lin  ZHU Dayong  SHEN Yinbin
Affiliation:(1. School of Civil Engineering,Hefei University of Technology,Hefei,Anhui 230009,China;; 2. Anhui Provincial Laboratory of Structure and Materials of Civil Engineering,Hefei,Anhui 230009,China)
Abstract:Considering the nonlinear failure characteristics of jointed rock mass,the critical slip field method is modified based on the generalized Hoek-Brown failure criterion to calculate the bearing capacity of joined rock mass foundation. By transforming the shear strength of each point on the Hoek-Brown strength envelope into the Mohr-Coulomb linear relation,transient internal friction angle and cohesion of each point are calculated;and the critical slip field method based on the Mohr-Coulomb criterion is improved and a new iterative procedure is thus established. Using the newly developed critical slip field method based on the Hoek-Brown failure criterion,the passive earth pressure and ultimate bearing capacity of jointed rock mass foundation are computed. The effects of values of GSI and mi on ultimate bearing capacity of foundation are comprehensively analyzed. The results of comparative studies show that the proposed method can accurately determine the critical slip surfaces and associated values of ultimate bearing capacity of jointed rock mass foundation with reasonable accuracy.
Keywords:rock mechanics  bearing capacity of foundation  critical slip fields  Hoek-Brown nonlinear failure criterion
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