A new high-resolution code for the direct numerical simulation of a zero pressure gradient turbulent boundary layers over a flat plate has been developed. Its purpose is to simulate a wide range of Reynolds numbers from Reθ = 300 to 6800 while showing a linear weak scaling up to 32,768 cores in the BG/P architecture. Special attention has been paid to the generation of proper inflow boundary conditions. The results are in good agreement with existing numerical and experimental data sets
Generating inflow fields for scale-resolving simulations of turbulent flow is crucial for a wide ran...
Direct numerical simulations (DNSs) of a turbulent boundary layer (TBL) with Re??=570-2560 were perf...
The aim of this work is to extend an existing CFD solver, named Shock/Boundary-Layer Interaction (SB...
A new high-resolution code for the direct numerical simulation of a zero pressure gradient turbulent...
A set of direct simulations of zero-pressure gradient, turbulent boundary layer flows are conducted ...
The turbulent boundary layer on a flat plate, with zero pressure gradient, is simulated numerically ...
A canonical turbulent boundary layer under zero pressure gradient is studied via direct numerical si...
Mieux comprendre les spécificités de la dynamique des couches limites à grand nombre de Reynolds mal...
This report describes the results of a relatively large-scale direct simulation of a tur-bulent boun...
Nearly all moving objects on Earth pass through fluids and many of them move at high speed. This mak...
Cette étude est à l’intersection de deux problématiques que sont (i) la description des structures c...
A well-resolved large-eddy simulation (LES) of a spatially developing turbulent boundary layer under...
Boundary layers are everywhere and computing direct numerical simulations (DNS) of them is crucial f...
The turbulent boundary layer driven by a freestream velocity that varies sinusoidally in time around...
The influence of turbulence inflow generation on direct numerical simulations (DNS) of high-speed tu...
Generating inflow fields for scale-resolving simulations of turbulent flow is crucial for a wide ran...
Direct numerical simulations (DNSs) of a turbulent boundary layer (TBL) with Re??=570-2560 were perf...
The aim of this work is to extend an existing CFD solver, named Shock/Boundary-Layer Interaction (SB...
A new high-resolution code for the direct numerical simulation of a zero pressure gradient turbulent...
A set of direct simulations of zero-pressure gradient, turbulent boundary layer flows are conducted ...
The turbulent boundary layer on a flat plate, with zero pressure gradient, is simulated numerically ...
A canonical turbulent boundary layer under zero pressure gradient is studied via direct numerical si...
Mieux comprendre les spécificités de la dynamique des couches limites à grand nombre de Reynolds mal...
This report describes the results of a relatively large-scale direct simulation of a tur-bulent boun...
Nearly all moving objects on Earth pass through fluids and many of them move at high speed. This mak...
Cette étude est à l’intersection de deux problématiques que sont (i) la description des structures c...
A well-resolved large-eddy simulation (LES) of a spatially developing turbulent boundary layer under...
Boundary layers are everywhere and computing direct numerical simulations (DNS) of them is crucial f...
The turbulent boundary layer driven by a freestream velocity that varies sinusoidally in time around...
The influence of turbulence inflow generation on direct numerical simulations (DNS) of high-speed tu...
Generating inflow fields for scale-resolving simulations of turbulent flow is crucial for a wide ran...
Direct numerical simulations (DNSs) of a turbulent boundary layer (TBL) with Re??=570-2560 were perf...
The aim of this work is to extend an existing CFD solver, named Shock/Boundary-Layer Interaction (SB...