We consider compressible pressureless fluid flows in Lagrangian coordinates in one space dimen- sion. We assume that the fluid self-interacts through a force field generated by the fluid itself. We explain how this flow can be described by a differential inclusion on the space of transport maps, in particular when a sticky particle dynamics is assumed. We study a discrete particle approximation and we prove global existence and stability results for solutions of this system. In the particular case of the Euler-Poisson system in the attractive regime our approach yields an explicit representation formula for the solutions
The main objective of this work is to study the effects of distance-dependent interactions in turbul...
This thesis considers a model of a scalar partial differential equation in the presence of a singula...
International audienceA continuum model for self-organized dynamics is numerically investigated. The...
We consider compressible pressureless fluid flows in Lagrangian coordinates in one space dimen- sion...
Sticky particle solutions to the one-dimensional pressureless gas dynamics equations can be construc...
We are interested in coupled microscopic/macroscopic models describing the evolution of particles di...
We present a simple approach for studying the one-dimensional pressureless Euler system via adhesion...
In this work we show that the one-dimensional pressureless Euler system admits a Lagragian character...
AbstractWe analyze a one-dimensional fluid–particle interaction model, composed by the Burgers equat...
The fluid-particle interaction model introduced by the three last authors in [J. Differential Equati...
International audienceIn this work, we investigate the numerical solving of the one-dimensional pres...
We consider several modi cations of the Euler system of uid dynamics including its pressureless vari...
We analyze the one-dimensional pressureless Euler-Poisson equations with linear damping and nonlocal...
International audienceWe analyze a one-dimensional fluid-particle interaction model, composed by the...
Gawȩdzki and Horvai have studied a model for the motion of particles carried in a turbulent fluid an...
The main objective of this work is to study the effects of distance-dependent interactions in turbul...
This thesis considers a model of a scalar partial differential equation in the presence of a singula...
International audienceA continuum model for self-organized dynamics is numerically investigated. The...
We consider compressible pressureless fluid flows in Lagrangian coordinates in one space dimen- sion...
Sticky particle solutions to the one-dimensional pressureless gas dynamics equations can be construc...
We are interested in coupled microscopic/macroscopic models describing the evolution of particles di...
We present a simple approach for studying the one-dimensional pressureless Euler system via adhesion...
In this work we show that the one-dimensional pressureless Euler system admits a Lagragian character...
AbstractWe analyze a one-dimensional fluid–particle interaction model, composed by the Burgers equat...
The fluid-particle interaction model introduced by the three last authors in [J. Differential Equati...
International audienceIn this work, we investigate the numerical solving of the one-dimensional pres...
We consider several modi cations of the Euler system of uid dynamics including its pressureless vari...
We analyze the one-dimensional pressureless Euler-Poisson equations with linear damping and nonlocal...
International audienceWe analyze a one-dimensional fluid-particle interaction model, composed by the...
Gawȩdzki and Horvai have studied a model for the motion of particles carried in a turbulent fluid an...
The main objective of this work is to study the effects of distance-dependent interactions in turbul...
This thesis considers a model of a scalar partial differential equation in the presence of a singula...
International audienceA continuum model for self-organized dynamics is numerically investigated. The...