A robust and efficient solver coupling computational fluid dynamics (CFD) with discrete element method (DEM) is developed to simulate particle-laden flows in various physical settings. An interpolation algorithm suitable for unstructured meshes is proposed to translate between mesh-based Eulerian fields and particle-based La-grangian quantities. The interpolation scheme reduces the mesh-dependence of the averaging and interpolation procedures. In addition, the fluid-particle interaction terms are treated semi-implicitly in this algorithm to improve stability and to maintain accuracy. Finally, it is demonstrated that sub-stepping is desirable for fluid-particle systems with small Stokes numbers. A momentum-conserving sub-stepping technique i...
AbstractFluid-particle interaction underpins important behavior of granular media. Particle-scale si...
CFD-DEM is used to simulate solid–fluid systems. DEM models the motion of discrete particles while C...
A substantial number of algorithms exists for the simulation of moving particles suspended in fluids...
Abstract. A robust and efficient solver coupling computational fluid dynamics (CFD) with discrete el...
While new methods combining the computational fluid dynamics (CFD) and the discrete element method (...
Particle methods in Computational Fluid Dynamics (CFD) are numerical tools for the solution of the e...
The exorbitant economic and environmental cost associated with fouling propels the need to develop a...
Complex three dimensional particle-fluid flow operations (for example pneumatic conveying systems, c...
In this paper, the capability of two major methods for modelling two-phase flow systems, coupled dis...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
The exorbitant economic and environmental cost associated with fouling propels the need to develop a...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
CFD-DEM is used to simulate solid-fluid systems. DEM models the motion of discrete particles while C...
First, methods of numerical analysis of gas-particle flows are classified into several approaches ba...
AbstractFluid-particle interaction underpins important behavior of granular media. Particle-scale si...
CFD-DEM is used to simulate solid–fluid systems. DEM models the motion of discrete particles while C...
A substantial number of algorithms exists for the simulation of moving particles suspended in fluids...
Abstract. A robust and efficient solver coupling computational fluid dynamics (CFD) with discrete el...
While new methods combining the computational fluid dynamics (CFD) and the discrete element method (...
Particle methods in Computational Fluid Dynamics (CFD) are numerical tools for the solution of the e...
The exorbitant economic and environmental cost associated with fouling propels the need to develop a...
Complex three dimensional particle-fluid flow operations (for example pneumatic conveying systems, c...
In this paper, the capability of two major methods for modelling two-phase flow systems, coupled dis...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
The exorbitant economic and environmental cost associated with fouling propels the need to develop a...
In this work, we present an alternative methodology to solve the particle-fluid interaction in the r...
CFD-DEM is used to simulate solid-fluid systems. DEM models the motion of discrete particles while C...
First, methods of numerical analysis of gas-particle flows are classified into several approaches ba...
AbstractFluid-particle interaction underpins important behavior of granular media. Particle-scale si...
CFD-DEM is used to simulate solid–fluid systems. DEM models the motion of discrete particles while C...
A substantial number of algorithms exists for the simulation of moving particles suspended in fluids...