LES for industrial applications with complex geometries is mostly characterised by: a) a finite volume CFD method using a non-staggered arrangement of the flow variables and second order accurate spatial and temporal discretisation schemes, b) an implicit top-hat filter, where the filter length is equal to the local computational cell size, and c) eddy-viscosity type LES models. LES based on these three main characteristics is indicated as industrial LES in this paper. It becomes increasingly clear that the numerical dissipation in CFD codes typically used in industrial applications with complex geometries may inhibit the predictive capabilities of explicit LES. Therefore, there is a need to quantify the numerical dissipation rate in such C...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
An investigation of the turbulent fluctuating kinetic energy dissipation in low Reynolds number chan...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
\u3cp\u3eLES for industrial applications with complex geometries is mostly characterised by: a) a fi...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
UnrestrictedIn the first part of this report, the effects of numerical dissipation presented in a tu...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
An investigation of the turbulent fluctuating kinetic energy dissipation in low Reynolds number chan...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
LES for industrial applications with complex geometries is mostly characterised by: a) a finite volu...
\u3cp\u3eLES for industrial applications with complex geometries is mostly characterised by: a) a fi...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
The approach used for computation of the convecting face fluxes and the cell face velocities results...
UnrestrictedIn the first part of this report, the effects of numerical dissipation presented in a tu...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
Direct numerical simulation (DNS) databases are compared to assess the accuracy and reproducibility ...
An investigation of the turbulent fluctuating kinetic energy dissipation in low Reynolds number chan...