The rapid change in scales over a shock has the potential to introduce unique difficulties in Large Eddy Simulations (LES) of compressible shock-turbulence flows if the governing model does not sufficiently capture the spectral distribution of energy in the upstream turbulence. A method for the regularization of LES of shock-turbulence interactions is presented which is constructed to enforce that the energy content in the highest resolved wavenumbers decays as k^(−5/3), and is computed locally in physical-space at low computational cost. The application of the regularization to an existing subgrid scale model is shown to remove high wavenumber errors while maintaining agreement with Direct Numerical Simulations (DNS) of forced and decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
The incompressible Navier-Stokes equations form an excellent mathematical model for turbulent flows....
The rapid change in scales over a shock has the potential to introduce unique difficulties in Large ...
The canonical problem of a nearly stationary, nearly planar shockwave passing through isotropic turb...
A new modeling approach for large-eddy simulation (LES) is obtained by combining a regularization p...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
The incompressible Navier-Stokes equations form an excellent mathematical model for turbulent flows....
The rapid change in scales over a shock has the potential to introduce unique difficulties in Large ...
The canonical problem of a nearly stationary, nearly planar shockwave passing through isotropic turb...
A new modeling approach for large-eddy simulation (LES) is obtained by combining a regularization p...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
High resolution large eddy simulations (LES) are performed to study the interaction of a stationary ...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Direct simulations of the incompressible Navier-Stokes equations at high Reynolds numbers are not fe...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
The incompressible Navier-Stokes equations form an excellent mathematical model for turbulent flows....