We give an overview of our recent progress in developing a framework for the derivation of fully computable guaranteed posteriori error bounds for finite element approximation including conforming, non-conforming, mixed and discontinuous finite element schemes. Whilst the details of the actual estimator are rather different for each particular scheme, there is nonetheless a common underlying structure at work in all cases. We aim to illustrate this structure by treating conforming, non-conforming and discontinuous finite element schemes in a single framework. In taking a rather general viewpoint, some of the finer details of the analysis that rely on the specific properties of each particular scheme are obscured but, in return, we hope to a...
This paper establishes a unified framework for the a posteriori error analysis of a large class of n...
The equilibrated residual method for a posteriori error estimation is extended to nonconforming fini...
Residual-based a posteriori error estimates were derived within one unifying framework for lowest-or...
We give an overview of our recent progress in developing a framework for the derivation of fully com...
We obtain fully computable a posteriori error estimators for the energy norm of the error in second-...
AbstractIn this paper, we discuss with guaranteed a priori and a posteriori error estimates of finit...
International audienceThis paper deals with the verification of simulations performed using the fini...
We develop and compare a number of alternative approaches to obtain guaranteed and fully computable ...
For a nonconforming finite element approximation of an elliptic model problem, we propose a posterio...
Abstract. We obtain a computable a posteriori error bound on the broken energy norm of the error in ...
We obtain a fully computable a posteriori error bound on the broken energy norm of the error in the ...
Abstract. An a posteriori error estimator is obtained for a nonconforming finite element approximati...
We derive an a posteriori error estimator giving a computable upper bound on the error in the energy...
An a posteriori error estimator is obtained for a nonconforming finite element approximation of a li...
This paper establishes a unified framework for the a posteriori error analysis of a large class of n...
The equilibrated residual method for a posteriori error estimation is extended to nonconforming fini...
Residual-based a posteriori error estimates were derived within one unifying framework for lowest-or...
We give an overview of our recent progress in developing a framework for the derivation of fully com...
We obtain fully computable a posteriori error estimators for the energy norm of the error in second-...
AbstractIn this paper, we discuss with guaranteed a priori and a posteriori error estimates of finit...
International audienceThis paper deals with the verification of simulations performed using the fini...
We develop and compare a number of alternative approaches to obtain guaranteed and fully computable ...
For a nonconforming finite element approximation of an elliptic model problem, we propose a posterio...
Abstract. We obtain a computable a posteriori error bound on the broken energy norm of the error in ...
We obtain a fully computable a posteriori error bound on the broken energy norm of the error in the ...
Abstract. An a posteriori error estimator is obtained for a nonconforming finite element approximati...
We derive an a posteriori error estimator giving a computable upper bound on the error in the energy...
An a posteriori error estimator is obtained for a nonconforming finite element approximation of a li...
This paper establishes a unified framework for the a posteriori error analysis of a large class of n...
The equilibrated residual method for a posteriori error estimation is extended to nonconforming fini...
Residual-based a posteriori error estimates were derived within one unifying framework for lowest-or...