The combined finite–discrete element (FDEM) has become a well-accepted numerical technique to simulate the fracturing process of rocks under different loading conditions. However, the study on three-dimensional (3D) FDEM simulation of rock failure process is highly limited in comparison with that on two-dimensional (2D) FDEM simulations, which is due to the high computational cost of the 3D FDEM. This paper implements an adaptive contact activation approach and a mass scaling technique with critical viscous damping into a GPGPU-parallelized Y-HFDEM 2D/3D IDE code formally developed by the authors to further speed up 3D FDEM simulation besides GPGPU parallelization. It is proved that the 3D FDEM modelling with the adaptive contact activation...
Mechanical cutting provides one of the most flexible and environmentally friendly excavation methods...
A combined finite-discrete element method (FDEM) parallelized on the basis of GPGPU is implemented t...
Combined finite-discrete element method has become one of the most powerful numericalmethods for mod...
The combined finite–discrete element (FDEM) has become a well-accepted numerical technique to simula...
As a state-of-the-art computational method for simulating rock fracturing and fragmentation, the com...
Throughout the years, rock fracture mechanism has been studied extensively experimentally, analytica...
The hybrid finite‐discrete element method (FDEM) is widely used for engineering applications, which,...
This paper introduces the Y-HFDEM code based on two-dimensional combinedfinite-discrete-element meth...
Within the framework of combined finite-discrete element method (FDEM), we propose a novel and effic...
In the field of geotechnical engineering, the number of applications of combined/hybrid finite-discr...
Discrete element method or extended finite element method is often adopted to simulate crack initiat...
The multi-scale, high-resolution and accurate structural modeling of rocks is a powerful means to re...
Mechanical cutting provides one of the most flexible and environmentally friendly excavation methods...
A combined finite-discrete element method (FDEM) parallelized on the basis of GPGPU is implemented t...
Combined finite-discrete element method has become one of the most powerful numericalmethods for mod...
The combined finite–discrete element (FDEM) has become a well-accepted numerical technique to simula...
As a state-of-the-art computational method for simulating rock fracturing and fragmentation, the com...
Throughout the years, rock fracture mechanism has been studied extensively experimentally, analytica...
The hybrid finite‐discrete element method (FDEM) is widely used for engineering applications, which,...
This paper introduces the Y-HFDEM code based on two-dimensional combinedfinite-discrete-element meth...
Within the framework of combined finite-discrete element method (FDEM), we propose a novel and effic...
In the field of geotechnical engineering, the number of applications of combined/hybrid finite-discr...
Discrete element method or extended finite element method is often adopted to simulate crack initiat...
The multi-scale, high-resolution and accurate structural modeling of rocks is a powerful means to re...
Mechanical cutting provides one of the most flexible and environmentally friendly excavation methods...
A combined finite-discrete element method (FDEM) parallelized on the basis of GPGPU is implemented t...
Combined finite-discrete element method has become one of the most powerful numericalmethods for mod...