The dynamics of inertial particles in turbulence is modelled and investigated by means of direct numerical simulation of an axisymmetrically expanding homogeneous turbulent strained flow. This flow can mimic the dynamics of particles close to stagnation points. The influence of mean straining flow is explored by varying the dimensionless strain rate parameter $Sk_0/\epsilon_0$ from 0.2 to 20. We report results relative to the acceleration variances and probability density functions for both passive and inertial particles. A high mean strain is found to have a significant effect on the acceleration variance both directly, through an increase in wave number magnitude, and indirectly, through the coupling of the fluctuating velocity and the me...
The properties of the transport of heavy inertial particles in a uniformly sheared turbulent flow ha...
Most numerical studies for freely advected inertial particles in turbulent flow, only considering th...
Preferential concentration of inertial particles in turbulent flow is studied by high resolution dir...
The dynamics of inertial particles in turbulence is modelled and investigated by means of direct num...
This thesis consists of three parts. The first part consists of a study of high-Reynolds number, ...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
Particle acceleration in turbulent flows can be considered a key issue for many environmental and in...
The settling of (inertial) particles is studied in homogeneous shear turbulence. A drift velocity pe...
We report experimental results on the dynamics of heavy particles of the size of the Kolmogorov scal...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present results from recent direct numerical simulations of heavy particle transport in homogeneo...
Abstract. We present results from recent direct numerical simulations of heavy particle transport in...
Turbulent transport of material inclusions plays an important role in many natural and industrial si...
13 pages, 10 figures, 2 tablesWe present the results of Direct Numerical Simulations (DNS) of turbul...
The properties of the transport of heavy inertial particles in a uniformly sheared turbulent flow ha...
Most numerical studies for freely advected inertial particles in turbulent flow, only considering th...
Preferential concentration of inertial particles in turbulent flow is studied by high resolution dir...
The dynamics of inertial particles in turbulence is modelled and investigated by means of direct num...
This thesis consists of three parts. The first part consists of a study of high-Reynolds number, ...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
Particle acceleration in turbulent flows can be considered a key issue for many environmental and in...
The settling of (inertial) particles is studied in homogeneous shear turbulence. A drift velocity pe...
We report experimental results on the dynamics of heavy particles of the size of the Kolmogorov scal...
International audienceWe study the dynamics of neutrally buoyant particles with diameters varying in...
We present results from recent direct numerical simulations of heavy particle transport in homogeneo...
Abstract. We present results from recent direct numerical simulations of heavy particle transport in...
Turbulent transport of material inclusions plays an important role in many natural and industrial si...
13 pages, 10 figures, 2 tablesWe present the results of Direct Numerical Simulations (DNS) of turbul...
The properties of the transport of heavy inertial particles in a uniformly sheared turbulent flow ha...
Most numerical studies for freely advected inertial particles in turbulent flow, only considering th...
Preferential concentration of inertial particles in turbulent flow is studied by high resolution dir...