In this paper we develop the aposteriorierror analysis of an augmented mixed-primal finite element method for the 2D and 3D versions of a stationary flow and transport coupled system, typically encountered in sedimentation–consolidation processes. The governing equations consist in the Brinkman problem with concentration-dependent viscosity, written in terms of Cauchy pseudo-stresses and bulk velocity of the mixture; coupled with a nonlinear advection– nonlinear diffusion equation describing the transport of the solids volume fraction. We derive two efficient and reliable residual-based aposteriorierror estimators for a finite element scheme using Raviart–Thomas spaces of order kfor the stress approximation, and continuous piecewise polynom...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this work we develop the a posteriori error analysis of an augmented mixed finite element method ...
In this paper we develop the a posteriori error analysis of an augmented mixed-primal finite element...
In this paper we develop the a posteriori error analysis of an augmented mixed-primal finite element...
This paper is devoted to the mathematical and numerical analysis of a strongly cou- pled flow and tr...
We develop the a posteriori error analysis for mixed-primal and fully-mixed finite element methods a...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal fini...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal fini...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal finite element...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal finite element...
This paper is devoted to the mathematical and numerical analysis of a strongly coupled flow and tran...
This paper is devoted to the mathematical and numerical analysis of a strongly coupled flow and tran...
In this paper we develop an a posteriori error analysis for an augmented mixed–primal finite element...
In this paper we develop an a posteriori error analysis for an augmented mixed–primal finite element...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this work we develop the a posteriori error analysis of an augmented mixed finite element method ...
In this paper we develop the a posteriori error analysis of an augmented mixed-primal finite element...
In this paper we develop the a posteriori error analysis of an augmented mixed-primal finite element...
This paper is devoted to the mathematical and numerical analysis of a strongly cou- pled flow and tr...
We develop the a posteriori error analysis for mixed-primal and fully-mixed finite element methods a...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal fini...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal fini...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal finite element...
In this paper we develop an a posteriori error analysis for an augmented mixed-primal finite element...
This paper is devoted to the mathematical and numerical analysis of a strongly coupled flow and tran...
This paper is devoted to the mathematical and numerical analysis of a strongly coupled flow and tran...
In this paper we develop an a posteriori error analysis for an augmented mixed–primal finite element...
In this paper we develop an a posteriori error analysis for an augmented mixed–primal finite element...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this paper we analyze an augmented mixed finite element method for the steady Navier-Stokes equat...
In this work we develop the a posteriori error analysis of an augmented mixed finite element method ...