A discrete element method (DEM) has widely been used to simulate asphalt mixture characteristics, and DEM models can consider the effect of aggregate gradation and interaction between particles. However, proper selection of model parameters is crucial to obtain convincing results from DEM-based simulations. This paper presents a method to appropriately determine the mechanical parameters to be used in DEM-based simulation of asphalt concrete mixture. Splitting test specimens are prepared by using asphalt mixture, and the splitting test results are compared with simulation results from two-dimensional (2D) DEM and three-dimensional (3D) DEM. Basing on the DEM results, the effects of contact model parameters on the simulation results are anal...
AbstractThe Discrete Element Model has been used here to simulate constant strain rate uniaxial comp...
A clustered distinct element method (DEM) approach is presented as a research tool for modeling asph...
The paper aims to simulate the micromechanical behavior of asphalt mixtures during the compaction pr...
Asphalt mixture is the most widely used pavement engineering material. Because the laboratory tests ...
In order to obtain more accurate parameters required for the simulation of asphalt mixtures in the d...
This thesis investigates the use of Discrete Element Modelling (DEM) to simulate the behaviour of a ...
This study aims to numerically investigate the effect of particle size distribution (PSD) of asphalt...
This thesis investigates the use of Discrete Element Modelling (DEM) to simulate the elastic and vis...
Asphalt mixture was a granular material, and traditional mechanical testing methods were difficult t...
Constant strain rate tests for a graded asphalt mixture under three constant strain rates have been ...
Asphalt mixtures are commonly used in pavement engineering, especially for highway construction. The...
Creep tests on asphalt mixtures have been undertaken under four stress levels in the laboratory whil...
The discrete element method (DEM) requires an enormous amount of computational resources when applie...
This paper addresses simulation of asphalt on the macroscopic scale, using the Discrete Element Mode...
Gradation segregation strongly affects the service performance of asphalt pavement. However, rare st...
AbstractThe Discrete Element Model has been used here to simulate constant strain rate uniaxial comp...
A clustered distinct element method (DEM) approach is presented as a research tool for modeling asph...
The paper aims to simulate the micromechanical behavior of asphalt mixtures during the compaction pr...
Asphalt mixture is the most widely used pavement engineering material. Because the laboratory tests ...
In order to obtain more accurate parameters required for the simulation of asphalt mixtures in the d...
This thesis investigates the use of Discrete Element Modelling (DEM) to simulate the behaviour of a ...
This study aims to numerically investigate the effect of particle size distribution (PSD) of asphalt...
This thesis investigates the use of Discrete Element Modelling (DEM) to simulate the elastic and vis...
Asphalt mixture was a granular material, and traditional mechanical testing methods were difficult t...
Constant strain rate tests for a graded asphalt mixture under three constant strain rates have been ...
Asphalt mixtures are commonly used in pavement engineering, especially for highway construction. The...
Creep tests on asphalt mixtures have been undertaken under four stress levels in the laboratory whil...
The discrete element method (DEM) requires an enormous amount of computational resources when applie...
This paper addresses simulation of asphalt on the macroscopic scale, using the Discrete Element Mode...
Gradation segregation strongly affects the service performance of asphalt pavement. However, rare st...
AbstractThe Discrete Element Model has been used here to simulate constant strain rate uniaxial comp...
A clustered distinct element method (DEM) approach is presented as a research tool for modeling asph...
The paper aims to simulate the micromechanical behavior of asphalt mixtures during the compaction pr...