We conduct numerical experiments to investigate the spatial clustering of particles and bubbles in simulations of homogeneous and isotropic turbulence. On varying the Stokes parameter and the densities, striking differences in the clustering of the particles can be observed. To quantify these visual findings we use the Kaplan–Yorke dimension. This local scaling analysis shows a dimension of approximately 1.4 for the light bubble distribution, whereas the distribution of very heavy particles shows a dimension of approximately 2.6. However, clearly different parameter combinations yield the same dimensions. To overcome this degeneracy and to further develop the understanding of clustering, we perform a morphological (geometrical and topologic...
Understanding the spatial distribution of finite-size massive particles, such as heavy impurities, d...
Turbulent fluids laden with small, heavy particles are common in nature. Prominent examples of such ...
Particle-laden flows are of relevant interest in many industrial and natural systems. When the carri...
We conduct numerical experiments to investigate the spatial clustering of particles and bubbles in s...
This work experimentally examines the geometric characterization and spatial distribution of particl...
Abstract. Distributions of heavy particles suspended in incompressible turbulent flows are investiga...
We investigate the clustering morphology of a swarm of freely rising deformable bubbles. A three-dim...
Distributions of heavy particles suspended in incompressible turbulent flows are investigated by mea...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
To understand the fundamental mechanism of the clustering of heavy and light small particles in high...
International audienceWe investigate experimentally the spatial distributions of heavy and neutrally...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Spatial distributions of heavy particles suspended in an incompressible isotropic and homogeneous tu...
Understanding the spatial distribution of finite-size massive particles, such as heavy impurities, d...
Turbulent fluids laden with small, heavy particles are common in nature. Prominent examples of such ...
Particle-laden flows are of relevant interest in many industrial and natural systems. When the carri...
We conduct numerical experiments to investigate the spatial clustering of particles and bubbles in s...
This work experimentally examines the geometric characterization and spatial distribution of particl...
Abstract. Distributions of heavy particles suspended in incompressible turbulent flows are investiga...
We investigate the clustering morphology of a swarm of freely rising deformable bubbles. A three-dim...
Distributions of heavy particles suspended in incompressible turbulent flows are investigated by mea...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
To understand the fundamental mechanism of the clustering of heavy and light small particles in high...
International audienceWe investigate experimentally the spatial distributions of heavy and neutrally...
Particles that are heavy compared to the fluid in which they are embedded (inertial particles) tend ...
Spatial distributions of heavy particles suspended in an incompressible isotropic and homogeneous tu...
Understanding the spatial distribution of finite-size massive particles, such as heavy impurities, d...
Turbulent fluids laden with small, heavy particles are common in nature. Prominent examples of such ...
Particle-laden flows are of relevant interest in many industrial and natural systems. When the carri...