In large-eddy simulation (LES), it is often assumed that the filter width is equal to the grid spacing. Predictions from such LES are grid-spacing dependent since any subgrid-scale (SGS) model used in the LES equations is dependent on the resolved flow field which itself varies with grid spacing. Moreover, numerical errors affect the flow field, especially the smallest resolved scales. Thus, predictions using this approach are affected by both modelling and numerical choices. However, grid-spacing-independent LES predictions unaffected by numerical choices are necessary to validate LES models through comparison with a trusted template. First, such a template is created here through direct numerical simulation (DNS). Then, simulations are co...
In the context of Large Eddy Simulation (LES) of turbulent flows, there is a current need to compare...
A method for large eddy simulation (LES) is presented in which the sub-grid-scale modeling is achiev...
The equations for large-eddy simulation (LES) are derived formally by applying a spatial filter to t...
In large-eddy simulation (LES), it is often assumed that the filter width is equal to the grid spaci...
In large-eddy simulation (LES), it is often assumed that the filter width is equal to the grid spaci...
In Large Eddy Simulation (LES), it is often assumed that the filter width is equal to grid spacing. ...
In Large Eddy Simulation (LES), it is often assumed that the filter width is equal to grid spacing. ...
Predictions from conventional large-eddy simulation (LES) are known to be grid-spacing and spatial-d...
Predictions from conventional large-eddy simulation (LES) are known to be grid-spacing and spatial-d...
The previously proposed methodology of Explicitly Filtered Large Eddy Simulation (EFLES) predicts ve...
The previously proposed methodology of Explicitly Filtered Large Eddy Simulation (EFLES) predicts ve...
To investigate whether predictions from conventional Large Eddy Simulation (LES), which are known to...
To investigate whether predictions from conventional Large Eddy Simulation (LES), which are known to...
In large-eddy simulations (LES), only the dynamics of large scales is computed and the effect of sma...
In the context of Large Eddy Simulation (LES) of turbulent flows, there is a current need to compare...
In the context of Large Eddy Simulation (LES) of turbulent flows, there is a current need to compare...
A method for large eddy simulation (LES) is presented in which the sub-grid-scale modeling is achiev...
The equations for large-eddy simulation (LES) are derived formally by applying a spatial filter to t...
In large-eddy simulation (LES), it is often assumed that the filter width is equal to the grid spaci...
In large-eddy simulation (LES), it is often assumed that the filter width is equal to the grid spaci...
In Large Eddy Simulation (LES), it is often assumed that the filter width is equal to grid spacing. ...
In Large Eddy Simulation (LES), it is often assumed that the filter width is equal to grid spacing. ...
Predictions from conventional large-eddy simulation (LES) are known to be grid-spacing and spatial-d...
Predictions from conventional large-eddy simulation (LES) are known to be grid-spacing and spatial-d...
The previously proposed methodology of Explicitly Filtered Large Eddy Simulation (EFLES) predicts ve...
The previously proposed methodology of Explicitly Filtered Large Eddy Simulation (EFLES) predicts ve...
To investigate whether predictions from conventional Large Eddy Simulation (LES), which are known to...
To investigate whether predictions from conventional Large Eddy Simulation (LES), which are known to...
In large-eddy simulations (LES), only the dynamics of large scales is computed and the effect of sma...
In the context of Large Eddy Simulation (LES) of turbulent flows, there is a current need to compare...
In the context of Large Eddy Simulation (LES) of turbulent flows, there is a current need to compare...
A method for large eddy simulation (LES) is presented in which the sub-grid-scale modeling is achiev...
The equations for large-eddy simulation (LES) are derived formally by applying a spatial filter to t...