This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy norm for linear elastic fracture mechanics problems solved using the extended finite element method (XFEM). The paper can be considered as an extension and enhancement of a previous work in which the upper bounds of the error were developed in a FEM framework. The upper bound property requires the recovered solution to be equilibrated and continuous. The proposed technique consists of using a recovery technique, especially adapted to the XFEM framework that yields equilibrium at a local level (patch by patch). Then a postprocess based on the partition of unity concept is used to obtain continuity. The result is a very accurate but only nearly-...
Key Words: extended finite element method; error estimation; recovery; goal oriented adaptivity Erro...
peer reviewedTraditionally, recovery based error estimators in linear elasticity have considered the...
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...
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...
[EN] This paper introduces a recovery-type error estimator yielding upper bounds of the error in ene...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
[EN] A new stress recovery procedure that provides accurate estimations of the discretization error ...
peer reviewedEP/G042705/1 Increased Reliability for Industrially Relevant Automatic Crack Growth Sim...
Key Words: extended finite element method; error estimation; recovery; goal oriented adaptivity Erro...
peer reviewedTraditionally, recovery based error estimators in linear elasticity have considered the...
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...
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...
[EN] This paper introduces a recovery-type error estimator yielding upper bounds of the error in ene...
This paper introduces a recovery-type error estimator yielding upper bounds of the error in energy n...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
Significant research effort has been devoted to produce one-sided error estimates for Finite Element...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
A new stress recovery procedure that provides accurate estimations of the discretization error for l...
[EN] A new stress recovery procedure that provides accurate estimations of the discretization error ...
peer reviewedEP/G042705/1 Increased Reliability for Industrially Relevant Automatic Crack Growth Sim...
Key Words: extended finite element method; error estimation; recovery; goal oriented adaptivity Erro...
peer reviewedTraditionally, recovery based error estimators in linear elasticity have considered the...
peer reviewedEP/G042705/1 Increased Reliability for Industrially Relevant Automatic Crack Growth Sim...