Numerical simulation of the influence of small-scale defects on the true-triaxial strength of rock samples

被引:14
作者
Senent, Salvador [1 ]
Jimenez, Rafael [1 ]
Reyes, Alexandra [1 ]
机构
[1] Tech Univ Madrid, Madrid, Spain
关键词
Polyaxial rock strength; Mogi; Failure criteria; Numerical analysis; Finite differences; FLAC3D; INTERMEDIATE PRINCIPAL STRESS; MOHR-COULOMB CRITERION; POLYAXIAL STRENGTH; FAILURE; DEFORMABILITY; FRACTURE; BEHAVIOR;
D O I
10.1016/j.compgeo.2013.05.006
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A numerical model is used to investigate the influence of randomly located 'defects' on the strength of rock samples with a Mogi-Coulomb three-dimensional failure criterion that are subjected to polyaxial states of stress. A methodology is presented to compute 'equivalent' Mohr Coulomb strength parameters as a function of the 'instantaneous' stress, and sensitivity analyses are employed to study the influence of the stress state, of the total percentage of defects, and of the type of spatial distribution of defects within the sample. Results indicate that increments of strength due to the intermediate principal stress are less relevant for samples with defects, hence suggesting that the influence of polyaxial stress states is less significant for rock masses (that incorporate 'defects' or 'discontinuities' into their structure) than for intact rock. Results also indicate that the strength of rock with defects can be modelled as a 'homogeneous' material with reduced strength properties. The reduction factors are a linear function of the percentage of defects, and they tend to be greater for "lumped" defects than for "isolated" defects. (c) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:142 / 156
页数:15
相关论文
共 46 条
[11]   Lade and Modified Lade 3D Rock Strength Criteria [J].
da Fontoura, Sergio A. B. .
ROCK MECHANICS AND ROCK ENGINEERING, 2012, 45 (06) :1001-1006
[12]  
Descamps F, 2012, HARMONISING ROCK ENGINEERING AND THE ENVIRONMENT, P597
[13]   Limiting envelopes of a dry porous limestone under true triaxial stress states [J].
Descamps, F. ;
da Silva, M. Ramos ;
Schroeder, C. ;
Verbrugge, J-C ;
Tshibangu, J-P .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2012, 56 :88-99
[14]   SOIL MECHANICS AND PLASTIC ANALYSIS OR LIMIT DESIGN [J].
DRUCKER, DC ;
PRAGER, W .
QUARTERLY OF APPLIED MATHEMATICS, 1952, 10 (02) :157-165
[15]  
Goodman RE., 1989, Introduction to rock mechanics
[16]   A new true triaxial cell for testing mechanical properties of rock, and its use to determine rock strength and deformability of Westerly granite [J].
Haimson, B ;
Chang, C .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2000, 37 (1-2) :285-296
[17]  
Haimson B, 2009, J STRUCT GEOL, P1
[18]  
Haimson BC, 1995, INTERNATIONAL CONGRESS ON ROCK MECHANICS - PROCEEDINGS, VOLS 1 AND 2, P341
[19]   SOME OBSERVATIONS CONCERNING MICROSCOPIC AND MECHANICAL BEHAVIOR OF QUARTZITE SPECIMENS IN STIFF, TRIAXIAL COMPRESSION TESTS [J].
HALLBAUER, DK ;
WAGNER, H ;
COOK, NGW .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 1973, 10 (06) :713-+
[20]  
Itasca Consulting Group, 2009, FLAC 3D FAST LAGR AN