An efficient Eulerian method for poly-disperse particles in turbulent flows is implemented, verified and validated for a channel flow. The approach couples a mixture model with a quadrature-based moment method for the particle size distribution in a LES framework, augmented by an approximate deconvolution method to reconstructs the unfiltered velocity. The particle velocity conditioned on particle size is calculated with an equilibrium model, valid for low Stokes numbers. A population balance equation is solved with the direct quadrature method of moments, that efficiently represents the continuous particle size distribution. In this first study particulate processes are not considered and the capability of the model to properly describe pa...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
The Eulerian-Lagrangian approach based on Large-Eddy Simulation (LES) is one of the most promising a...
An efficient Eulerian method for poly-disperse particles in turbulent flows is implemented, verified...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
\u3cp\u3eThe Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simu...
Lagrangian and eulerian models for particle transport by a turbulent fluid phase are presented. In b...
This work deals with the numerical description of dilute polydispersed and turbulent two-phase flows...
This work deals with the numerical description of dilute polydispersed and turbulent two-phase flows...
A poly-disperse particle description using a Lagrangian Stochastic (LS) framework coupled to Large E...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
The Eulerian-Lagrangian approach based on Large-Eddy Simulation (LES) is one of the most promising a...
An efficient Eulerian method for poly-disperse particles in turbulent flows is implemented, verified...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
The Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simulation (L...
\u3cp\u3eThe Euler-Lagrange approach, based on Direct Numerical Simulation (DNS) and Large-Eddy Simu...
Lagrangian and eulerian models for particle transport by a turbulent fluid phase are presented. In b...
This work deals with the numerical description of dilute polydispersed and turbulent two-phase flows...
This work deals with the numerical description of dilute polydispersed and turbulent two-phase flows...
A poly-disperse particle description using a Lagrangian Stochastic (LS) framework coupled to Large E...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
This work presents a theoretical and numerical study of gas-particle two-phase flow within the Euler...
The Eulerian-Lagrangian approach based on Large-Eddy Simulation (LES) is one of the most promising a...