This paper presents a numerical investigation of shear behavior and strain localization in cemented sands using the distinct element method (DEM), employing two different failure criteria for grain bonding. The first criterion is characterized by a Mohr–Coulomb failure line with two distinctive contributions, cohesive and frictional, which sum to give the total bond resistance; the second features a constant, pressure-independent strength at low compressive forces and purely frictional resistance at high forces, which is the standard bond model implemented in the Particle Flow Code (PFC2D). Dilatancy, material friction angle and cohesion, strain and stress fields, the distribution of bond breakages, the void ratio and the averaged pure rota...
There is an increasing use of the discrete element method (DEM) to study cemented (e.g. concrete and...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...
This paper presents a numerical investigation of shear behavior and strain localization in cemented ...
This paper presents a numerical investigation of shear behavior and strain localization in cemented ...
Part I of this thesis investigates the behavior of cemented sands (i.e., bond breakage and stress st...
AbstractThis paper presents an investigation into the inter-particle bonding effects on the mechanic...
In this paper, the numerical simulation by the discrete element method (DEM), is used to investigate...
In cemented sand, the influences of the sampling factors (i.e., the curing time, cement–sand ratio, ...
In this paper, triaxial tests and numerical simulations using the discrete element method (DEM) are ...
Many natural gas and oil reserves are situated in uncemented and weakly cemented formations. These...
We propose an extension of the Discrete Element Method for the numerical simulation of cemented sand...
The mechanical responses of cemented soils intimately rely on the amount and nature of cementing age...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c, ϕ) ge...
A study was conducted on cemented sand modeled with a contact bond model to investigate the influenc...
There is an increasing use of the discrete element method (DEM) to study cemented (e.g. concrete and...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...
This paper presents a numerical investigation of shear behavior and strain localization in cemented ...
This paper presents a numerical investigation of shear behavior and strain localization in cemented ...
Part I of this thesis investigates the behavior of cemented sands (i.e., bond breakage and stress st...
AbstractThis paper presents an investigation into the inter-particle bonding effects on the mechanic...
In this paper, the numerical simulation by the discrete element method (DEM), is used to investigate...
In cemented sand, the influences of the sampling factors (i.e., the curing time, cement–sand ratio, ...
In this paper, triaxial tests and numerical simulations using the discrete element method (DEM) are ...
Many natural gas and oil reserves are situated in uncemented and weakly cemented formations. These...
We propose an extension of the Discrete Element Method for the numerical simulation of cemented sand...
The mechanical responses of cemented soils intimately rely on the amount and nature of cementing age...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c, ϕ) ge...
A study was conducted on cemented sand modeled with a contact bond model to investigate the influenc...
There is an increasing use of the discrete element method (DEM) to study cemented (e.g. concrete and...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...
In this paper, the application of the distinct element method (DEM) to frictional cohesive (c,) geom...