Particle collisions are mainly governed by the preferential concentration of inertia particles and the formation of fold caustics. By fold caustics, we mean that relative velocity does not go smoothly to zero when the particle separations decrease due to inertia. Despite the importance of the second-order relative velocity structure function, there has been relatively little experimental research on the formation of caustics due to the high accuracy requirements for the particle relative velocity measurements. In the dissipation range, an obvious departure between the second-order structure function of particles normalized by the square of the Kolmogorov velocity and the Kolmogorov turbulent scaling of r(2) was observed for all four experim...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Holographic measurements of the clustering of electrically charged, inertial particles in homogenous...
We compute the joint distribution of relative velocities and separations of identical inertial parti...
Particle collisions are mainly governed by the preferential concentration of inertia particles and t...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
The distribution of relative velocities between particles provides invaluable information on the rat...
Small scale clustering of inertial particles and relative velocity of particle pairs have been fully...
The relationship between inertial particle pair dynamics in the dissipation range and local turbulen...
DoctorThe relationship between inertial particle pair dynamics in the dissipation range and local tu...
The statistics of velocity differences between pairs of heavy inertial point particles suspended in ...
This paper addresses the effect of inter-particle collisions on the segregation of non-settling iner...
Spatial and velocity statistics of heavy point-like particles in incompressible, homogeneous, and is...
We report experimental measurements of kinematic and dynamic particle concentration kernels conditio...
Suspensions of small heavy particles in turbulent flows are found in a variety of natural and indust...
Using one-way coupled direct numerical simulations of inertial particles in homogeneous isotropic tu...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Holographic measurements of the clustering of electrically charged, inertial particles in homogenous...
We compute the joint distribution of relative velocities and separations of identical inertial parti...
Particle collisions are mainly governed by the preferential concentration of inertia particles and t...
This work is concerned with the study of inertial particles in homogeneous isotropic turbulent flows...
The distribution of relative velocities between particles provides invaluable information on the rat...
Small scale clustering of inertial particles and relative velocity of particle pairs have been fully...
The relationship between inertial particle pair dynamics in the dissipation range and local turbulen...
DoctorThe relationship between inertial particle pair dynamics in the dissipation range and local tu...
The statistics of velocity differences between pairs of heavy inertial point particles suspended in ...
This paper addresses the effect of inter-particle collisions on the segregation of non-settling iner...
Spatial and velocity statistics of heavy point-like particles in incompressible, homogeneous, and is...
We report experimental measurements of kinematic and dynamic particle concentration kernels conditio...
Suspensions of small heavy particles in turbulent flows are found in a variety of natural and indust...
Using one-way coupled direct numerical simulations of inertial particles in homogeneous isotropic tu...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Holographic measurements of the clustering of electrically charged, inertial particles in homogenous...
We compute the joint distribution of relative velocities and separations of identical inertial parti...