A recovery-explicit error estimator in energy norm for linear elasticity
DOI10.1016/j.cma.2015.01.013zbMath1423.74909OpenAlexW1996804895WikidataQ57547723 ScholiaQ57547723MaRDI QIDQ1800201
E. Nadal, Pedro Díez, Francisco Javier Fuenmayor, Juan José Ródenas, Manuel Tur
Publication date: 23 October 2018
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/10251/52818
Classical linear elasticity (74B05) Finite element methods applied to problems in solid mechanics (74S05) Error bounds for boundary value problems involving PDEs (65N15) Finite element, Rayleigh-Ritz and Galerkin methods for boundary value problems involving PDEs (65N30)
Related Items (1)
Cites Work
- Goal-oriented explicit residual-type error estimates in XFEM
- Efficient finite element methodology based on Cartesian grids: application to structural shape optimization
- On superconvergence techniques
- A new non-intrusive technique for the construction of admissible stress fields in model verification
- Accurate recovery-based upper error bounds for the extended finite element framework
- Adaptive finite element methods in computational mechanics
- On the asymptotic exactness of error estimators for linear triangular finite elements
- Derivative recovery and a posteriori error estimate for extended finite elements
- New advances on a posteriori error on constitutive relation in f. e. analysis
- A general method for recovering equilibrating element tractions
- Rapid stress analysis of geometrically complex domains using implicit meshing
- Adaptive methods for hybrid equilibrium finite element models
- Local error estimators for finite element linear analysis
- Analysis of the superconvergent patch recovery technique and a posteriori error estimator in the finite element method. II
- Mesh adaptivity driven by goal-oriented locally equilibrated superconvergent patch recovery
- An explicit residual-type error estimator for Q1-quadrilateral extended finite element method in two-dimensional linear elastic fracture mechanics
- Constant-free explicit error estimator with sharp upper error bound property for adaptive FE analysis in elasticity and fracture
- Analysis of the Zienkiewicz-Zhua-posteriori error estimator in the finite element method
- Improving the accuracy of XFEM crack tip fields using higher order quadrature and statically admissible stress recovery
- Equilibrated patch recovery error estimates: simple and accurate upper bounds of the error
- Improvement of the superconvergent patch recovery technique by the use of constraint equations: the SPR-C technique
- A recovery-type error estimator for the extended finite element method based onsingular+smoothstress field splitting
- A posteriorierror estimation for extended finite elements by an extended global recovery
- Recovery of equilibrium on star patches using a partition of unity technique
- Error Estimate Procedure in the Finite Element Method and Applications
- A simple error estimator and adaptive procedure for practical engineerng analysis
- The superconvergent patch recovery anda posteriori error estimates. Part 1: The recovery technique
- The superconvergent patch recovery anda posteriori error estimates. Part 2: Error estimates and adaptivity
- A‐posteriori error estimates for the finite element method
- Built-in field equations for recovery procedures
- An element by element recovery method with built-in field equations
- Patch recovery based on superconvergent derivatives and equilibrium
- Superconvergent patch recovery with equilibrium and conjoint interpolant enhancements
- Some remarks on Zienkiewicz‐Zhu estimator
- Enhanced superconvergent patch recovery incorporating equilibrium and boundary conditions
- Effective error sttimation from continous, boundary admissible estimated stress fields
- Recovering lower bounds of the error by postprocessing implicit residuala posteriorierror estimates
- Polynomial representations for patch recovery procedures
- A simple error estimator for extended finite elements
- Averaging technique for FE -- a posteriori error control in elasticity. I: Conforming FEM
- Averaging technique for FE -- a posteriori error control in elasticity. II: \(\lambda\)-independent estimates
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
This page was built for publication: A recovery-explicit error estimator in energy norm for linear elasticity