Discrete element method (DEM) simulations of planar wave propagation are used to examine the effect of particle surface roughness on the stiffness and dynamic response of granular materials. A new contact model that considers particle surface roughness is implemented in the DEM simulations. Face-centred cubic lattice packings and random configurations are used; uniform spheres are considered in both cases to isolate fabric and contact model effects from inertia effects. For the range of values considered here surface roughness caused a significant reduction in stiffness, particularly at lower confining stresses. The simulations confirm that surface roughness effects can at least partially explain the value of the exponent in the relationshi...
A constitutive theory is developed for granular material undergoing arbitrarily large deformations. ...
Engineering-mechanics contact models are utilized to describe the inelastic, frictional interparticl...
This study aims to develop a fundamental understanding of the role of fine particles on the small-st...
Discrete-element method (DEM) simulations of planar wave propagation are used to examine the effect ...
Soils are granular materials consisting of many particles, and the overall response of a soil can be...
Understanding the mechanical stiffness of closely packed, dense granular systems is of interest in m...
Wave propagation in granular materials is numerically studied using discrete element simulation. Pri...
This paper deals with the behavior of packed spherical particles sheared on rough surfaces. The disc...
Laboratory geophysics tests including bender elements and acoustic emission measure the speed of pro...
Experimental and numerical studies have been conducted to investigate the effect of particle shape a...
This book is devoted to the Discrete Element Method (DEM) technique, a discontinuum modelling approa...
This paper examines the effect of a non-isotropic, true triaxial stress state on soil stiffness usin...
This contribution assesses the effect of particle surface roughness on the shear wave velocity (VS) ...
Particles slide and roll on each other when a granular medium is sheared. Consequently, the tribolog...
It has long been recognised that the macroscopic mechanical behaviour of a granular material depends...
A constitutive theory is developed for granular material undergoing arbitrarily large deformations. ...
Engineering-mechanics contact models are utilized to describe the inelastic, frictional interparticl...
This study aims to develop a fundamental understanding of the role of fine particles on the small-st...
Discrete-element method (DEM) simulations of planar wave propagation are used to examine the effect ...
Soils are granular materials consisting of many particles, and the overall response of a soil can be...
Understanding the mechanical stiffness of closely packed, dense granular systems is of interest in m...
Wave propagation in granular materials is numerically studied using discrete element simulation. Pri...
This paper deals with the behavior of packed spherical particles sheared on rough surfaces. The disc...
Laboratory geophysics tests including bender elements and acoustic emission measure the speed of pro...
Experimental and numerical studies have been conducted to investigate the effect of particle shape a...
This book is devoted to the Discrete Element Method (DEM) technique, a discontinuum modelling approa...
This paper examines the effect of a non-isotropic, true triaxial stress state on soil stiffness usin...
This contribution assesses the effect of particle surface roughness on the shear wave velocity (VS) ...
Particles slide and roll on each other when a granular medium is sheared. Consequently, the tribolog...
It has long been recognised that the macroscopic mechanical behaviour of a granular material depends...
A constitutive theory is developed for granular material undergoing arbitrarily large deformations. ...
Engineering-mechanics contact models are utilized to describe the inelastic, frictional interparticl...
This study aims to develop a fundamental understanding of the role of fine particles on the small-st...