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Influence of grain size on strength of polymineralic crystalline rock: New insights from DEM grain-based modeling 被引量:6

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摘要 Grain size effect on rock strength is a topic of great interest in geotechnical engineering.A consensus obtained from earlier laboratory tests is that rock strength generally decreases with the increase of grain size for both silicate and carbonate rocks;however,some recent numerical results conflict with such laboratory test results.To address this intriguing issue,the effect of grain size on strength of polymineralic crystalline rock with low porosity is investigated numerically using the grain-based modeling(GBM)approach in discrete element method(DEM)by interpreting micro-cracking process in response to loading.In agreement with some previous DEM simulation results,the simulated rock strength is found to increase with increasing grain size for both homogeneous and heterogeneous models,even when the number of assembled disks in one mineral grain changes.The mechanism of strength increase with increasing grain size is mainly associated with the number of assembled smooth-joint contacts along grain interfaces and the generation of grain boundary cracks in response to loading.The grain interfaces significantly weaken the integrity of the rock model,which is similar to effects of inherent defects in real rock.As the grain size increases,fewer grain interfaces are built in the model and the rock strength becomes much higher.Hence,by solely changing the mineral grain size in a model,the mechanism of grain size effect as observed in laboratory tests cannot be replicated.To address this issue,a method of degradation of grain boundary strength parameters is used to mimic the possible mechanism of grain size effect.The simulated strength using the method becomes comparable with those obtained from laboratory tests when the heterogeneity in the rock is considered.Degradation of grain boundary parameters with increasing grain size provides a plausible explanation for the grain size effect on rock strength.
出处 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第4期755-766,共12页 岩石力学与岩土工程学报(英文版)
基金 in part supported by the National Natural Science Foundation of China(Grant Nos.41877217 and 51609178) the General Research Fund of the Research Grants Council(Hong Kong,China)(Grant No.17303917) the Singapore Academic Research Fund Tier 1 Grant(RG112/14).
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  • 1Zhihong Zhao.Gouge Particle Evolution in a Rock Fracture Undergoing Shear: a Microscopic DEM Study[J].Rock Mechanics and Rock Engineering.2013(6)
  • 2Zhihong Zhao,Lanru Jing,Ivars Neretnieks.Particle mechanics model for the effects of shear on solute retardation coefficient in rock fractures[J].International Journal of Rock Mechanics and Mining Sciences.2012
  • 3T. Belem,M. Souley,F. Homand.Method for Quantification of Wear of Sheared Joint Walls Based on Surface Morphology[J].Rock Mechanics and Rock Engineering.2009(6)
  • 4Jung-Wook Park,Jae-Joon Song.Numerical simulation of a direct shear test on a rock joint using a bonded-particle model[J].International Journal of Rock Mechanics and Mining Sciences.2009(8)
  • 5C. Lambert,O. Buzzi,A. Giacomini.Influence of calcium leaching on the mechanical behavior of a rock–mortar interface: A DEM analysis[J].Computers and Geotechnics.2009(3)
  • 6Nathan Deisman,Diego Mas Ivars,Caroline Darcel,Richard J. Chalaturnyk.Empirical and numerical approaches for geomechanical characterization of coal seam reservoirs[J].International Journal of Coal Geology.2009(3)
  • 7A. Karami,D. Stead.Asperity Degradation and Damage in the Direct Shear Test: A Hybrid FEM/DEM Approach[J].Rock Mechanics and Rock Engineering.2008(2)
  • 8O. Buzzi,J. Hans,M. Boulon,F. Deleruyelle,F. Besnus.Hydromechanical study of rock–mortar interfaces[J].Physics and Chemistry of the Earth.2006(8)
  • 9D.O. Potyondy,P.A. Cundall.A bonded-particle model for rock[J].International Journal of Rock Mechanics and Mining Sciences.2004(8)
  • 10N. Fardin,Q. Feng,O. Stephansson.Application of a new in situ 3D laser scanner to study the scale effect on the rock joint surface roughness[J].International Journal of Rock Mechanics and Mining Sciences.2003(2)

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