Gawȩdzki and Horvai have studied a model for the motion of particles carried in a turbulent fluid and shown that in a limiting regime with low levels of viscosity and molecular diffusivity, pairs of particles exhibit the phenomena of stickiness when they meet. In this paper we characterise the motion of an arbitrary number of particles in a simplified version of their model
A microscopic, stochastic, minimal model for collective and cohesive motionof identical self-propell...
Particle interactions in highly-viscous nonlinear and linear shear flows play an important role in a...
This paper exposes a novel exploratory formalism, the end goal of which is the numerical simulation ...
Abstract. Gawȩdzki and Horvai have studied a model for the motion of particles carried in a turbule...
We establish a connection between two different models of clustering: the deterministic model of sti...
This thesis covers various aspects of motion of small rigid particles in complex flows. It is in two...
The book surveys the state-of-the-art methods that are currently available to model and simulate the...
We study exclusion processes on the integer lattice in which particles change their velocities due t...
Particles suspended in turbulent fluid flows are common in Nature and in technological applications....
The diffusion of small, spherical, rigid particles suspended in an incompressible turbulent fluid, b...
We show how the theory of stochastic flows allows to recover in an elementary way a well known resul...
Abstract. We give a quantitative analysis of clustering in a stochastic model of one-dimensional gas...
The motion of an inertial particle in a Gaussian random field is studied. This is a model for the ph...
This thesis deals with the behaviour of particles in a stochastic model of turbulence. Special atten...
In many situations ranging from geophysics to chemical engineering, turbulent drag moves particle cl...
A microscopic, stochastic, minimal model for collective and cohesive motionof identical self-propell...
Particle interactions in highly-viscous nonlinear and linear shear flows play an important role in a...
This paper exposes a novel exploratory formalism, the end goal of which is the numerical simulation ...
Abstract. Gawȩdzki and Horvai have studied a model for the motion of particles carried in a turbule...
We establish a connection between two different models of clustering: the deterministic model of sti...
This thesis covers various aspects of motion of small rigid particles in complex flows. It is in two...
The book surveys the state-of-the-art methods that are currently available to model and simulate the...
We study exclusion processes on the integer lattice in which particles change their velocities due t...
Particles suspended in turbulent fluid flows are common in Nature and in technological applications....
The diffusion of small, spherical, rigid particles suspended in an incompressible turbulent fluid, b...
We show how the theory of stochastic flows allows to recover in an elementary way a well known resul...
Abstract. We give a quantitative analysis of clustering in a stochastic model of one-dimensional gas...
The motion of an inertial particle in a Gaussian random field is studied. This is a model for the ph...
This thesis deals with the behaviour of particles in a stochastic model of turbulence. Special atten...
In many situations ranging from geophysics to chemical engineering, turbulent drag moves particle cl...
A microscopic, stochastic, minimal model for collective and cohesive motionof identical self-propell...
Particle interactions in highly-viscous nonlinear and linear shear flows play an important role in a...
This paper exposes a novel exploratory formalism, the end goal of which is the numerical simulation ...