Fluid flows around an obstacle generate vortices which, in turn, generate forces on the obstacle. This phenomenon is studied for planar viscous flows governed by the stationary Navier–Stokes equations with inhomogeneous Dirichlet boundary data in a (virtual) square containing an obstacle. In a symmetric framework the appearance of forces is strictly related to the multiplicity of solutions. Precise bounds on the data ensuring uniqueness are then sought and several functional inequalities (concerning relative capacity, Sobolev embedding, solenoidal extensions) are analyzed in detail: explicit bounds are obtained for constant boundary data. The case of “almost symmetric” frameworks is also considered. A universal threshold on the Reynolds num...
From the steady Stokes and Navier-Stokes models, a penalization method has been considered by severa...
We consider the question of the existence of stationary solutions for the Navier Stokes equations de...
AbstractThe steady flow of a Navier–Stokes fluid is analysed in a two-dimensional asymmetric unbound...
Fluid flows around an obstacle generate vortices which, in turn, generate forces on the obstacle. Th...
Fluid flows around a symmetric obstacle generate vortices which may lead to symmetry breaking of the...
The stationary Navier–Stokes equations under Navier boundary conditions are considered in a square. ...
34 pagesInternational audienceWe study the stationary Navier--Stokes equations in the whole plane wi...
We study in this work the influence of a thin obstacle on the behavior of incompressible flow. We ex...
Fluid flows around an obstacle generate vortices which, in turn, generate lift forces on the obstacl...
The classical existence theorem for the steady Navier-Stokes equations, based on a bound for the sol...
International audienceIn this paper we study the Navier-Stokes boundary-initial value problem in the...
In this paper, we study an obstacle problem associated with the mean curvatureflow with constant driv...
We study the stationary Navier--Stokes equations in the whole plane with a compactly supported force...
From the steady Stokes and Navier-Stokes models, a penalization method has been considered by severa...
We consider the question of the existence of stationary solutions for the Navier Stokes equations de...
AbstractThe steady flow of a Navier–Stokes fluid is analysed in a two-dimensional asymmetric unbound...
Fluid flows around an obstacle generate vortices which, in turn, generate forces on the obstacle. Th...
Fluid flows around a symmetric obstacle generate vortices which may lead to symmetry breaking of the...
The stationary Navier–Stokes equations under Navier boundary conditions are considered in a square. ...
34 pagesInternational audienceWe study the stationary Navier--Stokes equations in the whole plane wi...
We study in this work the influence of a thin obstacle on the behavior of incompressible flow. We ex...
Fluid flows around an obstacle generate vortices which, in turn, generate lift forces on the obstacl...
The classical existence theorem for the steady Navier-Stokes equations, based on a bound for the sol...
International audienceIn this paper we study the Navier-Stokes boundary-initial value problem in the...
In this paper, we study an obstacle problem associated with the mean curvatureflow with constant driv...
We study the stationary Navier--Stokes equations in the whole plane with a compactly supported force...
From the steady Stokes and Navier-Stokes models, a penalization method has been considered by severa...
We consider the question of the existence of stationary solutions for the Navier Stokes equations de...
AbstractThe steady flow of a Navier–Stokes fluid is analysed in a two-dimensional asymmetric unbound...