summary:Numerical simulation of turbulent flows is one of the great challenges in Computational Fluid Dynamics (CFD). In general, Direct Numerical Simulation (DNS) is not feasible due to limited computer resources (performance and memory), and the use of a turbulence model becomes necessary. The paper will discuss several aspects of two approaches of turbulent modeling—Large Eddy Simulation (LES) and Variational Multiscale (VMS) models. Topics which will be addressed are the detailed derivation of these models, the analysis of commutation errors in LES models as well as other results from mathematical analysis
A numerical assessment of two classes of variational multiscale (VMS) methods for the simulation of ...
Two realizations of finite element variational multiscale (VMS) methods for the simulation of incomp...
Various realizations of variational multiscale (VMS) methods for simulating turbulent incompressible...
Abstract. Numerical simulation of turbulent flows is one of the great challenges in Com-putational F...
summary:Numerical simulation of turbulent flows is one of the great challenges in Computational Flui...
In this work we study the performance of some variational multiscale models (VMS) in the large eddy ...
The variational multiscale method has been shown to perform well for large-eddy simulation (LES) of ...
Large Eddy Simulation (LES) is an efficient computational tool for turbulence simulation. Variationa...
We present an LES-type variational multiscale theory of turbulence. Our approach derives completely ...
In the report we present a summary of the new models and algorithms developed by the PI and the stud...
Recently, Calo [V.M. Calo, Residual-based multiscale turbulence modeling, PhD thesis, Stanford Unive...
The first and most exhaustive work of its kind devoted entirely to the subject, Large Eddy Simulatio...
The objectives of recent variational multiscale work in turbulence have been to capture all scales ...
Based on the recently introduced variational multi-scale (VMS) approach to large-eddy simulation (LE...
element method Abstract. Two realizations of finite element variational multiscale (VMS) methods for...
A numerical assessment of two classes of variational multiscale (VMS) methods for the simulation of ...
Two realizations of finite element variational multiscale (VMS) methods for the simulation of incomp...
Various realizations of variational multiscale (VMS) methods for simulating turbulent incompressible...
Abstract. Numerical simulation of turbulent flows is one of the great challenges in Com-putational F...
summary:Numerical simulation of turbulent flows is one of the great challenges in Computational Flui...
In this work we study the performance of some variational multiscale models (VMS) in the large eddy ...
The variational multiscale method has been shown to perform well for large-eddy simulation (LES) of ...
Large Eddy Simulation (LES) is an efficient computational tool for turbulence simulation. Variationa...
We present an LES-type variational multiscale theory of turbulence. Our approach derives completely ...
In the report we present a summary of the new models and algorithms developed by the PI and the stud...
Recently, Calo [V.M. Calo, Residual-based multiscale turbulence modeling, PhD thesis, Stanford Unive...
The first and most exhaustive work of its kind devoted entirely to the subject, Large Eddy Simulatio...
The objectives of recent variational multiscale work in turbulence have been to capture all scales ...
Based on the recently introduced variational multi-scale (VMS) approach to large-eddy simulation (LE...
element method Abstract. Two realizations of finite element variational multiscale (VMS) methods for...
A numerical assessment of two classes of variational multiscale (VMS) methods for the simulation of ...
Two realizations of finite element variational multiscale (VMS) methods for the simulation of incomp...
Various realizations of variational multiscale (VMS) methods for simulating turbulent incompressible...