Kinetic energy flux (KEF) is an important physical quantity that characterizes cascades of kinetic energy in turbulent flows. In large-eddy simulation (LES), it is crucial for the subgrid-scale (SGS) model to accurately predict the KEF in turbulence. In this paper, we propose a new eddy-viscosity SGS model constrained by the properly modelled KEF for LES of compressible wall-bounded turbulence. The new methodology has the advantages of both accurate prediction of the KEF and strong numerical stability in LES. We can obtain an approximate KEF by the tensor-diffusivity model, which has a high correlation with the real value. Then, using the artificial neural network method, the local ratios between the real KEF and the approximate KEF are acc...
A new one-equation subgrid scale (SGS) model that makes use of the transport equation for the SGS ki...
This article focuses on a subgrid-scale (SGS) eddy viscosity model based on helicity which is derive...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
In this paper, we propose artificial neural network based (ANN based) nonlinear algebraic models for...
Similar to the kinetic energy cascade, a helicity cascade is also a basic and key process in the gen...
An artificial neural network (ANN) is used to establish the relation between the resolved-scale flow...
A quasi-dynamic subgrid-scale (SGS) kinetic energy one-equation eddy-viscosity model is introduced i...
Atmospheric boundary layers and other wall-bounded flows are often simulated with the large-eddy sim...
We examine the application of neural network-based methods to improve the accuracy of large eddy sim...
In this article, we demonstrate the use of artificial neural networks as optimal maps which are util...
A new two-equation Kinetic-Eddy Simulation (KES) model is developed for large-eddy simulation (LES) ...
In the present study, we investigate different data-driven parameterizations for large eddy simulati...
Because the computational cost of large-eddy simulation (LES) in the near-wall region of wall-bounde...
In this investigation, a data-driven turbulence closure framework is introduced and deployed for the...
The wall-adapting local eddy-viscosity (WALE) model in large-eddy simulation can well predict wall-b...
A new one-equation subgrid scale (SGS) model that makes use of the transport equation for the SGS ki...
This article focuses on a subgrid-scale (SGS) eddy viscosity model based on helicity which is derive...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
In this paper, we propose artificial neural network based (ANN based) nonlinear algebraic models for...
Similar to the kinetic energy cascade, a helicity cascade is also a basic and key process in the gen...
An artificial neural network (ANN) is used to establish the relation between the resolved-scale flow...
A quasi-dynamic subgrid-scale (SGS) kinetic energy one-equation eddy-viscosity model is introduced i...
Atmospheric boundary layers and other wall-bounded flows are often simulated with the large-eddy sim...
We examine the application of neural network-based methods to improve the accuracy of large eddy sim...
In this article, we demonstrate the use of artificial neural networks as optimal maps which are util...
A new two-equation Kinetic-Eddy Simulation (KES) model is developed for large-eddy simulation (LES) ...
In the present study, we investigate different data-driven parameterizations for large eddy simulati...
Because the computational cost of large-eddy simulation (LES) in the near-wall region of wall-bounde...
In this investigation, a data-driven turbulence closure framework is introduced and deployed for the...
The wall-adapting local eddy-viscosity (WALE) model in large-eddy simulation can well predict wall-b...
A new one-equation subgrid scale (SGS) model that makes use of the transport equation for the SGS ki...
This article focuses on a subgrid-scale (SGS) eddy viscosity model based on helicity which is derive...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...