期刊文献+

Discrete element modeling of inherently anisotropic granular assemblies with polygonal particles 被引量:15

Discrete element modeling of inherently anisotropic granular assemblies with polygonal particles
原文传递
导出
摘要 In the present article, we study the effect of inherent anisotropy, i.e., initial bedding angle of particles and associated voids on macroscopic mechanical behavior of granular materials, by numerical simulation of several biaxial compression tests using the discrete element method (DEM). Particle shape is considered to be irregular convex-polygonal. The effect of inherent anisotropy is investigated by following the evolution of mobilized shear strength and volume change during loading. As experimental tests have already shown, numerical simulations also indicate that initial anisotropic condition has a great influence on the strength and deformational behavior of granular assemblies. Comparison of simulations with tests using oval particles, shows that angularity influences both the mobilized shear strength and the volume change regime, which originates from the interlocking resistance between particles. In the present article, we study the effect of inherent anisotropy, i.e., initial bedding angle of particles and associated voids on macroscopic mechanical behavior of granular materials, by numerical simulation of several biaxial compression tests using the discrete element method (DEM). Particle shape is considered to be irregular convex-polygonal. The effect of inherent anisotropy is investigated by following the evolution of mobilized shear strength and volume change during loading. As experimental tests have already shown, numerical simulations also indicate that initial anisotropic condition has a great influence on the strength and deformational behavior of granular assemblies. Comparison of simulations with tests using oval particles, shows that angularity influences both the mobilized shear strength and the volume change regime, which originates from the interlocking resistance between particles.
出处 《Particuology》 SCIE EI CAS CSCD 2012年第5期542-552,共11页 颗粒学报(英文版)
基金 supported by Research Deputy of Ferdowsi University of Mashhad.The provided grant(No.16759-03/12/89)
关键词 Inherent anisotropyGranular materialDiscrete element methodPolygonal particles Inherent anisotropyGranular materialDiscrete element methodPolygonal particles
  • 相关文献

参考文献1

二级参考文献10

  • 1Bathurst,R. J.A study of stress and anisotropy in idealized granularassemblies[]..1985
  • 2Cundall,P. A.Ball—A computer program to model granular mediausing the distinct element method[].Technical Note TN-LN- AdvancedTechnology Group Dames and Moore London.1978
  • 3Gupta,A. K.Constitutive modeling of rock?ll materials[]..2000
  • 4Janbu,N.Soil compressibility as determined by oedometer and triax-ial tests[].Proceedings of European conference on soil mechanics andfoundations engineering.1963
  • 5Kondner, R. L,& Zelasko, J. S.A hyperbolic stress–strain formulationfor sands[].Proceedings of nd Pan-American conference on soil mechanicsand foundations engineering.1963
  • 6Marachi, N. D,Chan, C. K,& Seed, H. B.Evaluation of propertiesof rockfill materials[].Journal of Soil Mechanics and Foundations DivisionAmerican Society of Civil Engineers.1972
  • 7Marsal,R. J.Large scale testing of rockfill materials[].Journal of SoilMechanics and Foundations Division American Society of Civil Engineers.1967
  • 8Marsal,R. J.Mechanical properties of rockfill[].Embankment-dam engineering casagrandeh volume.1973
  • 9McDowell, G. R,& Harireche, O.Discrete element modeling of soilparticle fracture[].Ge′otechnique.2002
  • 10Mirghasemi, A. A,Rothenburg, L,& Matyas, E. L.Numerical simula-tions of assemblies of two-dimensional polygon-shaped particles and effectsof confining pressure on shear strength[].Soils and Foundations.1997

共引文献9

同被引文献120

引证文献15

二级引证文献229

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部