Regularization models for the turbulent stress tensor are applied to mixing and separated boundary layers. The Leray and the NS-a models in large-eddy simulation (LES) are compared to direct numerical simulation (DNS) and (dynamic) eddy-viscosity models. These regularization models are at least as accurate as the dynamic eddy-viscosity model, and can be derived from an underlying dynamic principle. This allows one to maintain central transport properties of the Navier-Stokes equations in the model and to extend systematically toward complex applications. The NS-a model accurately represents the small-scale variability, albeit at considerable resolution. The Leray model was found to be much more robust, allowing simulations at high Reynolds ...
Turbulence readily arises in numerous flows in nature and technology. The large number of degrees of...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Regularization models for the turbulent stress tensor are applied to mixing and separated boundary l...
A new modeling approach for large-eddy simulation (LES) is obtained by combining a regularization p...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equations is found to provid...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
We review the spatial filtering approach to large-eddy simulation and describe the intuitive dissipa...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
The incompressible Navier-Stokes equations form an excellent mathematical model for turbulent flows....
Turbulence readily arises in numerous flows in nature and technology. The large number of degrees of...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Turbulence readily arises in numerous flows in nature and technology. The large number of degrees of...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Regularization models for the turbulent stress tensor are applied to mixing and separated boundary l...
A new modeling approach for large-eddy simulation (LES) is obtained by combining a regularization p...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equations is found to provid...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
We review the spatial filtering approach to large-eddy simulation and describe the intuitive dissipa...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Mathematical regularization of the nonlinear terms in the Navier-Stokes equation is found to provide...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
The incompressible Navier-Stokes equations form an excellent mathematical model for turbulent flows....
Turbulence readily arises in numerous flows in nature and technology. The large number of degrees of...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Turbulence readily arises in numerous flows in nature and technology. The large number of degrees of...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...
Inviscid regularization modeling of turbulent flow is investigated. Homogeneous, isotropic, decaying...