We consider a differential system based on the coupling of the Navier-Stokes and Darcy equations for modeling the interaction between surface and porous media flows. We formulate the problem as an interface equation, we analyze the associated (nonlinear) Steklov-Poincare' operators, and we prove its wellposedness. We propose and analyze iterative methods to solve a conforming finite element approximation of the coupled problem
As a first draft of a model for a river flowing on a homogeneous porous ground, we consider a system...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
We consider a differential system based on the coupling of the Navier-Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier– Stokes and Darcy equations fo...
This paper is an overview of known and new results about the coupling of Navier-Stokes and Darcy equ...
In this paper we study interface equations associated to the Darcy-Stokes problem using the classica...
In this paper we consider a coupled system made of the Stokes and Darcy equations, and we propose so...
AbstractThis paper proposes and analyzes a numerical method for solving the coupled Stokes and Darcy...
In this paper we provide an overview of mathematical and numerical models for the coupling of the Na...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
As a first draft of a model for a river flowing on a homogeneous porous ground, we consider a system...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
We consider a differential system based on the coupling of the Navier-Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier–Stokes and Darcy equations for...
We consider a differential system based on the coupling of the Navier– Stokes and Darcy equations fo...
This paper is an overview of known and new results about the coupling of Navier-Stokes and Darcy equ...
In this paper we study interface equations associated to the Darcy-Stokes problem using the classica...
In this paper we consider a coupled system made of the Stokes and Darcy equations, and we propose so...
AbstractThis paper proposes and analyzes a numerical method for solving the coupled Stokes and Darcy...
In this paper we provide an overview of mathematical and numerical models for the coupling of the Na...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
As a first draft of a model for a river flowing on a homogeneous porous ground, we consider a system...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...
We introduce a differential system based on the coupling of the (Navier) Stokes equations and the Da...