The stretched-vortex subgrid stress model for the large-eddy simulation of turbulent flows has been developed to the stage where it can be applied to realistic flow at large Reynolds numbers [1] [2]. The basic assumption of this model [3] is that the subgrid vortex structure consists of straight, stretched vortices containing a nearly axisymmetric subgrid vorticity field. Vortices of this type, such as the Burgers vortex and the stretched-spiral vortex have provided fair quantitative estimates of turbulence fine-scale properties [4]. These structures are probably an oversimplified model of fine-scale turbulence, but may nevertheless contain sufficient of the vortex-stretching and energy cascade physics characteristic of the small scales to ...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
A model for the ux of a passive scalar by the subgrid motions in the large-eddy simulation of turbu...
A new subgrid-scale (SGS) stress model is proposed for rotating turbulent flows, and the new model i...
A physical-space version of the stretched-vortex subgrid-stress model is presented and applied to la...
In large-eddy simulations of turbulence, the large scales of the flow are resolved by a numerical so...
A class of subgrid stress (SGS) models for large-eddy simulation (LES) is presented based on the ide...
Introduction One approach to the accurate computation of realistic engineering flows is that of lar...
We focus on subgrid-scale modeling for large-eddy simulation of incompressible turbulent flows. In p...
Some simple modifications to the stretched-vortex model are proposed. The first of these eliminates ...
We study the construction of subgrid-scale models for large-eddy simulation of incompressible turbul...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Simulations of complex, compressible, high-Reynolds-number flows require high-fidelity physics and t...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
A model for the ux of a passive scalar by the subgrid motions in the large-eddy simulation of turbu...
A new subgrid-scale (SGS) stress model is proposed for rotating turbulent flows, and the new model i...
A physical-space version of the stretched-vortex subgrid-stress model is presented and applied to la...
In large-eddy simulations of turbulence, the large scales of the flow are resolved by a numerical so...
A class of subgrid stress (SGS) models for large-eddy simulation (LES) is presented based on the ide...
Introduction One approach to the accurate computation of realistic engineering flows is that of lar...
We focus on subgrid-scale modeling for large-eddy simulation of incompressible turbulent flows. In p...
Some simple modifications to the stretched-vortex model are proposed. The first of these eliminates ...
We study the construction of subgrid-scale models for large-eddy simulation of incompressible turbul...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Simulations of complex, compressible, high-Reynolds-number flows require high-fidelity physics and t...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
Turbulence that occurs in nature, or in engineering flows, is usually not, even approximatively, hom...
A model for the ux of a passive scalar by the subgrid motions in the large-eddy simulation of turbu...
A new subgrid-scale (SGS) stress model is proposed for rotating turbulent flows, and the new model i...