We present results from large-eddy simulations (LES) of turbulent pipe flow in a computational domain of 42 radii in length. Wide ranges of the shear Reynolds number and Smagorinsky model parameter are covered, 180 ≤ Reτ ≤ 1500 and 0.05 ≤ Cs ≤ 1.2, respectively. The aim is to asses the effect of Cs on the resolved flow field and turbulence statistics as well as to test whether very large scale motions (VLSM) in pipe flow can be isolated from the near-wall cycle by enhancing the dissipative character of the static Smagorinsky model with elevated Cs values. We found that the optimal Cs to achieve best agreement with reference data varies with Reτ and further depends on the wall normal location and the quantity of interest. Furthermore, for in...
Understanding the origin of large-scale structures in high Reynolds number wall turbulence has been ...
A large amount of the energy needed to push fluids through pipes worldwide is dissipated by viscous ...
A direct numerical simulation of turbulent pipe flow is performed at Ret = 3008 with a long streamwi...
We present results from direct numerical simulations (DNS) of turbulent pipe flow at shear Reynolds ...
Very long coherent regions of energetic streamwise velocity fluctuations, so-called very-large-scale...
Large-eddy simulations (LES) of turbulent flow in a smooth-wall pipe at Reynolds numbers based on th...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
Despite the high relevance of wall-bounded turbulence for engineering and natural science applicatio...
In recent years there has been a considerable research effort dedicated to turbulent pipe flow. Topi...
Large-scale structures typically observed at or above the logarithmic layer of fully developed turbu...
In recent years there has been a considerable research effort dedicated to turbulent pipe flow. Topi...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
International audienceFully developed turbulent flows of power-law fluids in a cylindrical stationar...
Available online 31 August 2015Results are reported for wall-resolved large-eddy simulation of fully...
Understanding the origin of large-scale structures in high Reynolds number wall turbulence has been ...
A large amount of the energy needed to push fluids through pipes worldwide is dissipated by viscous ...
A direct numerical simulation of turbulent pipe flow is performed at Ret = 3008 with a long streamwi...
We present results from direct numerical simulations (DNS) of turbulent pipe flow at shear Reynolds ...
Very long coherent regions of energetic streamwise velocity fluctuations, so-called very-large-scale...
Large-eddy simulations (LES) of turbulent flow in a smooth-wall pipe at Reynolds numbers based on th...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
Despite the high relevance of wall-bounded turbulence for engineering and natural science applicatio...
In recent years there has been a considerable research effort dedicated to turbulent pipe flow. Topi...
Large-scale structures typically observed at or above the logarithmic layer of fully developed turbu...
In recent years there has been a considerable research effort dedicated to turbulent pipe flow. Topi...
We investigate statistics of large-scale structures from large-eddy simulation (LES) of turbulent ch...
International audienceFully developed turbulent flows of power-law fluids in a cylindrical stationar...
Available online 31 August 2015Results are reported for wall-resolved large-eddy simulation of fully...
Understanding the origin of large-scale structures in high Reynolds number wall turbulence has been ...
A large amount of the energy needed to push fluids through pipes worldwide is dissipated by viscous ...
A direct numerical simulation of turbulent pipe flow is performed at Ret = 3008 with a long streamwi...