We report experimental results on the dynamics of heavy particles of the size of the Kolmogorov scale in a fully developed turbulent flow. The mixed Eulerian structure function of two-particle velocity and acceleration difference vectors was observed to increase significantly with particle inertia for identical flow conditions. We show that this increase is related to a preferential alignment between these dynamical quantities. With increasing particle density the probability for those two vectors to be collinear was observed to grow. We show that these results are consistent with the preferential sampling of strain-dominated regions by inertial particles
International audienceWe present experimental observations of the spatial distribution of large iner...
DoctorThe relationship between inertial particle pair dynamics in the dissipation range and local tu...
The relative dispersion of pairs of inertial particles in incompressible, homogeneous, and isotropic...
We report experimental results on the dynamics of heavy particles of the size of the Kolmogorov scal...
The dynamics of inertial particles in turbulence is modelled and investigated by means of direct num...
We investigate the behaviour of microscopic heavy particles settling in homogeneous air turbulence. ...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present an overview of a numerical study on the small-scale dynamics and the large-scale dispersi...
In many natural phenomena and industrial processes one encounters sus-pensions within turbulent flow...
Suspensions of small heavy particles in turbulent flows are found in a variety of natural and indust...
We present the results of direct numerical simulations (DNS) of turbulent flows seeded with millions...
The relationship between inertial particle pair dynamics in the dissipation range and local turbulen...
International audienceWe present experimental observations of the spatial distribution of large iner...
DoctorThe relationship between inertial particle pair dynamics in the dissipation range and local tu...
The relative dispersion of pairs of inertial particles in incompressible, homogeneous, and isotropic...
We report experimental results on the dynamics of heavy particles of the size of the Kolmogorov scal...
The dynamics of inertial particles in turbulence is modelled and investigated by means of direct num...
We investigate the behaviour of microscopic heavy particles settling in homogeneous air turbulence. ...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present an overview of a numerical study on the small-scale dynamics and the large-scale dispersi...
In many natural phenomena and industrial processes one encounters sus-pensions within turbulent flow...
Suspensions of small heavy particles in turbulent flows are found in a variety of natural and indust...
We present the results of direct numerical simulations (DNS) of turbulent flows seeded with millions...
The relationship between inertial particle pair dynamics in the dissipation range and local turbulen...
International audienceWe present experimental observations of the spatial distribution of large iner...
DoctorThe relationship between inertial particle pair dynamics in the dissipation range and local tu...
The relative dispersion of pairs of inertial particles in incompressible, homogeneous, and isotropic...