A detailed assessment of the inter-scale energy budget of the turbulent flow in a von Kármán mixing tank has been performed based on two extensive experimental data sets. Measurements were performed at a Taylor microscale Reynolds number of in the central region of the tank, using scanning particle image velocimetry (PIV) to fully resolve the velocity gradient tensor (VGT), and stereoscopic PIV for an expanded field of view. Following a basic flow characterisation, the Kármán-Howarth-Monin-Hill equation was used to investigate the inter-scale energy transfer. Access to the full VGT enabled the contribution of the different terms of the energy budget to be evaluated without any assumptions or approximations. The scale-space distribution of t...
We present full volumetric (three-dimensional) time-resolved (+one-dimensional) measurements of the ...
International audienceWe present experimental evidence for a double cascade of kinetic energy in a s...
The Richtmyer-Meshkov instability (RMI) mixing flow induced by a planar shock wave of Mach 1.6 is in...
A detailed assessment of the inter-scale energy budget of the turbulent flow in a von Kármán mixing ...
International audienceIn this paper, we investigate the relations between global and local energy tr...
The energy transfer between different scales of a passive scalar advected by homogeneous isotropic t...
International audienceIt is first established, on the basis of new X-wire measurements, that the equ...
The scale energy budget utilizes a modified version of the classical Kolmogorov equation of wall tur...
Real turbulent flows are difficult to classify as either spatially homogeneous or isotropic. Nonethe...
International audienceAn important characteristic of geophysically turbulent flows is the transfer o...
The scale energy budget in the near wall region is a subject of great interest in turbulent flows si...
We analyse the inter-scale transfer of energy for two types of plane Poiseuille flow: the P4U exact ...
New experimental results are presented that investigate the nature of the intercomponent energy tran...
We analyse the inter-scale transfer of energy for turbulent channel flow at Reτ = 180 in a minimal f...
cited By 0International audienceIt is now well established that coherent structures exist in the maj...
We present full volumetric (three-dimensional) time-resolved (+one-dimensional) measurements of the ...
International audienceWe present experimental evidence for a double cascade of kinetic energy in a s...
The Richtmyer-Meshkov instability (RMI) mixing flow induced by a planar shock wave of Mach 1.6 is in...
A detailed assessment of the inter-scale energy budget of the turbulent flow in a von Kármán mixing ...
International audienceIn this paper, we investigate the relations between global and local energy tr...
The energy transfer between different scales of a passive scalar advected by homogeneous isotropic t...
International audienceIt is first established, on the basis of new X-wire measurements, that the equ...
The scale energy budget utilizes a modified version of the classical Kolmogorov equation of wall tur...
Real turbulent flows are difficult to classify as either spatially homogeneous or isotropic. Nonethe...
International audienceAn important characteristic of geophysically turbulent flows is the transfer o...
The scale energy budget in the near wall region is a subject of great interest in turbulent flows si...
We analyse the inter-scale transfer of energy for two types of plane Poiseuille flow: the P4U exact ...
New experimental results are presented that investigate the nature of the intercomponent energy tran...
We analyse the inter-scale transfer of energy for turbulent channel flow at Reτ = 180 in a minimal f...
cited By 0International audienceIt is now well established that coherent structures exist in the maj...
We present full volumetric (three-dimensional) time-resolved (+one-dimensional) measurements of the ...
International audienceWe present experimental evidence for a double cascade of kinetic energy in a s...
The Richtmyer-Meshkov instability (RMI) mixing flow induced by a planar shock wave of Mach 1.6 is in...