We consider the trajectories of particles suspended in a randomly moving fluid. If the Lyapunov exponent of these trajectories is negative, the paths of these particles coalesce, so that particles aggregate. Here we give a detailed account of a method [B. Mehlig and M. Wilkinson, Phys. Rev. Lett. 92, 250602 (2004)] for calculating this exponent: it is expressed as the expectation value of a random variable evolving under a stochastic differential equation. We analyze this equation in detail in the limit where the correlation time of the velocity field of the fluid is very short, such that the stochastic differential equation is a Langevin equation. We derive an asymptotic perturbation expansion of the Lyapunov exponent for particles suspend...
In this paper we present a rigorous analysis of a scaling limit related to the motion of an inertial...
We obtain an implicit equation for the correlation dimension which describes cluster- ing of inertia...
Thesis (Master's)--University of Washington, 2014Dynamics of inertial particles in two-dimensional p...
We calculate the Lyapunov exponents for particles suspended in a random three-dimensional flow, conc...
We consider particles suspended in a randomly stirred or turbulent fluid. When effects of the inerti...
The motion of an inertial particle in a Gaussian random field is studied. This is a model for the ph...
In nature, suspensions of small particles in fluids are common. An important example are rain drople...
This paper discusses the Lyapunov exponent λ for small particles in a spatially and temporally smoot...
We study the motion of small particles in a random turbulent. flow assuming a linear law of friction...
This thesis deals with the behaviour of particles in a stochastic model of turbulence. Special atten...
Heavy inertial particles in spatially and temporally flows can form clusters if their relaxation tim...
We obtain an implicit equation for the correlation dimension D2 of dynamical systems in terms of an ...
Abstract. We study the problem of homogenization for inertial particles moving in a time dependent r...
We derive a perturbative approach to study, in the large inertia limit, the dynamics of solid parti...
We study the problem of homogenization for inertial particles moving in a time-dependent random velo...
In this paper we present a rigorous analysis of a scaling limit related to the motion of an inertial...
We obtain an implicit equation for the correlation dimension which describes cluster- ing of inertia...
Thesis (Master's)--University of Washington, 2014Dynamics of inertial particles in two-dimensional p...
We calculate the Lyapunov exponents for particles suspended in a random three-dimensional flow, conc...
We consider particles suspended in a randomly stirred or turbulent fluid. When effects of the inerti...
The motion of an inertial particle in a Gaussian random field is studied. This is a model for the ph...
In nature, suspensions of small particles in fluids are common. An important example are rain drople...
This paper discusses the Lyapunov exponent λ for small particles in a spatially and temporally smoot...
We study the motion of small particles in a random turbulent. flow assuming a linear law of friction...
This thesis deals with the behaviour of particles in a stochastic model of turbulence. Special atten...
Heavy inertial particles in spatially and temporally flows can form clusters if their relaxation tim...
We obtain an implicit equation for the correlation dimension D2 of dynamical systems in terms of an ...
Abstract. We study the problem of homogenization for inertial particles moving in a time dependent r...
We derive a perturbative approach to study, in the large inertia limit, the dynamics of solid parti...
We study the problem of homogenization for inertial particles moving in a time-dependent random velo...
In this paper we present a rigorous analysis of a scaling limit related to the motion of an inertial...
We obtain an implicit equation for the correlation dimension which describes cluster- ing of inertia...
Thesis (Master's)--University of Washington, 2014Dynamics of inertial particles in two-dimensional p...