We introduce and analyse an augmented mixed variational formulation for the coupling of the Stokes and heat equations. More precisely, the underlying model consists of the Stokes equation suggested by the Oldroyd model for viscoelastic flow, coupled with the heat equation through a temperature-dependent viscosity of the fluid and a convective term. The original unknowns are the polymeric part of the extra-stress tensor, the velocity, the pressure, and the temperature of the fluid. In turn, for convenience of the analysis, the strain tensor, the vorticity, and an auxiliary symmetric tensor are introduced as further unknowns. This allows to join the polymeric and solvent viscosities in an adimensional viscosity, and to eliminate the polymeric...
A new mixed variational formulation for the Navier–Stokes equations with constant density and variab...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, the mixed convection boundary layer of a viscoelastic fluid past a sphere with consta...
We introduce and analyse an augmented mixed variational formulation for the coupling of the Stokes a...
In this paper we analyze the coupling of a scalar nonlinear convection-diffusion problem with the St...
In this paper we analyze the coupling of a scalar nonlinear convection-diffusion problem with the St...
In this paper we propose a new mixed-primal formulation for heatdriven flows with temperature-depend...
International audienceWe propose a mixed formulation for non-isothermal Oldroyd-Stokes problem where...
International audienceWe propose a mixed formulation for non-isothermal Oldroyd-Stokes problem where...
AbstractWe propose a new mixed formulation of the Stokes problem where the extra stress tensor is co...
A new stress‐based mixed variational formulation for the stationary Navier‐Stokes equations with con...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
A new mixed variational formulation for the Navier–Stokes equations with constant density and variab...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, the mixed convection boundary layer of a viscoelastic fluid past a sphere with consta...
We introduce and analyse an augmented mixed variational formulation for the coupling of the Stokes a...
In this paper we analyze the coupling of a scalar nonlinear convection-diffusion problem with the St...
In this paper we analyze the coupling of a scalar nonlinear convection-diffusion problem with the St...
In this paper we propose a new mixed-primal formulation for heatdriven flows with temperature-depend...
International audienceWe propose a mixed formulation for non-isothermal Oldroyd-Stokes problem where...
International audienceWe propose a mixed formulation for non-isothermal Oldroyd-Stokes problem where...
AbstractWe propose a new mixed formulation of the Stokes problem where the extra stress tensor is co...
A new stress‐based mixed variational formulation for the stationary Navier‐Stokes equations with con...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
A new mixed variational formulation for the Navier–Stokes equations with constant density and variab...
In this paper, we develop and analyze a mixed finite element method for the Stokes flow. This method...
In this paper, the mixed convection boundary layer of a viscoelastic fluid past a sphere with consta...