Coherent vortices in turbulent mixing layers are investigated by means of Direct Numerical Simulation (DNS) and Large-Eddy Simulation (LES). Subgrid-scale models defined in spectral and physical spaces are reviewed. The new "spectral-dynamic viscosity model", that allows to account for non-developed turbulence in the subgrid-scales, is discussed. Pseudo-spectral methods, combined with sixth-order compact finite differences schemes (when periodic boundary conditions cannot be established), are used to solve the Navier- Stokes equations. Simulations in temporal and spatial mixing layers show two types of pairing of primary Kelvin-Helmholtz (KH) vortices depending on initial conditions (or upstream conditions): quasi-2D and helical pairings. I...
An incompressible, time developing 3-D mixing layer with idealized initial conditions was simulated ...
The objective of this research was to further the understanding of the fundamental physical mechanis...
A Large Eddy Simulation (LES) based on filtered vorticity transport equation formulated using diffus...
The turbulent mixing layer has been studied extensively in many experimental undertakings. The insta...
Six subgrid models for the turbulent stress tensor are tested by conducting large-eddy simulations (...
For more than half a century turbulent mixing layers have been the subject of intense experimental a...
The evolution of the large-scale vortices in turbulent mixing layers was investigated both theoretic...
The stretched-vortex subgrid model is used to run large-eddy simulations of temporal mixing layers a...
AbstractLarge eddy simulation (LES) of spatially evolving turbulent mixing layer is carried out in t...
This paper reports results from a large-eddy simulation of a temporal mixing layer using the stretch...
Large Eddy Simulations of the plane mixing layer have been performed, for the purpose of educing the...
Large-eddy simulations of a spatially-evolving turbulent mixing layer have been performed. The flow ...
In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixi...
This paper details the influence of the nature of imposed inflow fluctuations on Large Eddy Simulati...
Surveys previous studies on the turbulent region formed at the boundary between two parallel fluid s...
An incompressible, time developing 3-D mixing layer with idealized initial conditions was simulated ...
The objective of this research was to further the understanding of the fundamental physical mechanis...
A Large Eddy Simulation (LES) based on filtered vorticity transport equation formulated using diffus...
The turbulent mixing layer has been studied extensively in many experimental undertakings. The insta...
Six subgrid models for the turbulent stress tensor are tested by conducting large-eddy simulations (...
For more than half a century turbulent mixing layers have been the subject of intense experimental a...
The evolution of the large-scale vortices in turbulent mixing layers was investigated both theoretic...
The stretched-vortex subgrid model is used to run large-eddy simulations of temporal mixing layers a...
AbstractLarge eddy simulation (LES) of spatially evolving turbulent mixing layer is carried out in t...
This paper reports results from a large-eddy simulation of a temporal mixing layer using the stretch...
Large Eddy Simulations of the plane mixing layer have been performed, for the purpose of educing the...
Large-eddy simulations of a spatially-evolving turbulent mixing layer have been performed. The flow ...
In this paper, Large Eddy Simulations are performed on the spatially developing plane turbulent mixi...
This paper details the influence of the nature of imposed inflow fluctuations on Large Eddy Simulati...
Surveys previous studies on the turbulent region formed at the boundary between two parallel fluid s...
An incompressible, time developing 3-D mixing layer with idealized initial conditions was simulated ...
The objective of this research was to further the understanding of the fundamental physical mechanis...
A Large Eddy Simulation (LES) based on filtered vorticity transport equation formulated using diffus...