The dynamical behavior of inertial disk-like particles in turbulent vertical channel flow is investigated by an Eulerian–Lagrangian point-particle approach. Gravity effects on distribution, translation, rotation and orientation statistics of non-spherical particles modeled as oblate spheroids have been studied both in an upward and a downward flow and compared with results obtained in the absence of gravity. Altogether 12 different particle classes have been studied, with inertia and shape parameterized by means of Stokes number St and aspect ratio λ ≤ 1. The St = 5 disk-like particles distribute more evenly across the channel in upward than in downward flow. The gravity effect on the particle concentration diminishes with large inertia and...
The present study reports detailed statistics for velocity and transfer rates of heavy particles dis...
Non-spherical particles transported by turbulent flow have a rich dynamics that combines their trans...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
A suspension of oblate spheroidal (disk-like) particles in turbulent channel flow has been investiga...
International audienceDirect numerical simulations (DNSs) have been performed to examine the inertia...
We investigated the rotation of non-spherical particles (rod-like and disk-like) in turbulent channe...
In the present PhD thesis, we investigate the dynamics of small non-spherical particles suspended in...
We study the angular dynamics of small non-spherical particles settling in a turbulent flow, such as...
The dynamical behavior of tiny elongated particles in a directly simulated turbulent flow field is i...
Using disk, spherical and needle-like particles with equal equivalent volume diameters, the orientat...
International audienceHow non-spherical particles orient as they settle in a flow has important prac...
Particle dynamics in a channel flow are investigated using large eddy simulation and a Lagrangian pa...
Recent experiments in a turbulent boundary layer by Gerashchenko et al. (J. Fluid Mech., vol. 617, 2...
In this work, we use large eddy simulations (LES) and Lagrangian tracking to study the influence of ...
The presence of solid rigid particles alters the global transport and rheological properties of the ...
The present study reports detailed statistics for velocity and transfer rates of heavy particles dis...
Non-spherical particles transported by turbulent flow have a rich dynamics that combines their trans...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
A suspension of oblate spheroidal (disk-like) particles in turbulent channel flow has been investiga...
International audienceDirect numerical simulations (DNSs) have been performed to examine the inertia...
We investigated the rotation of non-spherical particles (rod-like and disk-like) in turbulent channe...
In the present PhD thesis, we investigate the dynamics of small non-spherical particles suspended in...
We study the angular dynamics of small non-spherical particles settling in a turbulent flow, such as...
The dynamical behavior of tiny elongated particles in a directly simulated turbulent flow field is i...
Using disk, spherical and needle-like particles with equal equivalent volume diameters, the orientat...
International audienceHow non-spherical particles orient as they settle in a flow has important prac...
Particle dynamics in a channel flow are investigated using large eddy simulation and a Lagrangian pa...
Recent experiments in a turbulent boundary layer by Gerashchenko et al. (J. Fluid Mech., vol. 617, 2...
In this work, we use large eddy simulations (LES) and Lagrangian tracking to study the influence of ...
The presence of solid rigid particles alters the global transport and rheological properties of the ...
The present study reports detailed statistics for velocity and transfer rates of heavy particles dis...
Non-spherical particles transported by turbulent flow have a rich dynamics that combines their trans...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...