Significant research effort has been devoted to produce one-sided error estimates for Finite Element Analyses, in particular to provide upper bounds of the actual error. Typically, this has been achieved using residual-type estimates. One of the most popular and simpler (in terms of implementation) techniques used in commercial codes is the recovery-based error estimator. This technique produces accurate estimations of the exact error but is not designed to naturally produce upper bounds of the error in energy norm. Some attempts to remedy this situation provide bounds depending on unknown constants. Here, a new step towards obtaining error bounds from the recovery-based estimates is proposed. The idea is (1) to use a locally equilibrated r...
International audienceIn this paper we present preliminary results of a novel technique developed to...
International audienceIn this paper we present preliminary results of a novel technique developed to...
This is the pre-peer reviewed version of the following article: Díez, P.; Rodenas, J.J.; Zienkiewicz...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
peer reviewedTraditionally, recovery based error estimators in linear elasticity have considered the...
[EN] This paper introduces a recovery-type error estimator yielding upper bounds of the error in ene...
peer reviewedAn error control technique aimed to assess the quality of smoothed finite element appro...
An error control technique aimed to assess the quality of smoothed finite element approximations is ...
An error control technique aimed to assess the quality of smoothed finite element approximations is ...
peer reviewedEP/G042705/1 Increased Reliability for Industrially Relevant Automatic Crack Growth Sim...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
International audienceIn this paper we present preliminary results of a novel technique developed to...
International audienceIn this paper we present preliminary results of a novel technique developed to...
This is the pre-peer reviewed version of the following article: Díez, P.; Rodenas, J.J.; Zienkiewicz...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
peer reviewedTraditionally, recovery based error estimators in linear elasticity have considered the...
[EN] This paper introduces a recovery-type error estimator yielding upper bounds of the error in ene...
peer reviewedAn error control technique aimed to assess the quality of smoothed finite element appro...
An error control technique aimed to assess the quality of smoothed finite element approximations is ...
An error control technique aimed to assess the quality of smoothed finite element approximations is ...
peer reviewedEP/G042705/1 Increased Reliability for Industrially Relevant Automatic Crack Growth Sim...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
International audienceIn this paper we present preliminary results of a novel technique developed to...
International audienceIn this paper we present preliminary results of a novel technique developed to...
This is the pre-peer reviewed version of the following article: Díez, P.; Rodenas, J.J.; Zienkiewicz...