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The superconvergent patch recovery and <i>a posteriori</i> error estimates. Part 2: Error estimates and adaptivity

International Journal for Numerical Methods in Engineering · 1992 · Vol. 33(7) · pp. 1365–1382
O. C. ZienkiewiczJ.Z. Zhu

Abstract

Abstract In this second part of the paper, the issue of a posteriori error estimation is discussed. In particular, we derive a theorem showing the dependence of the effectivity index for the Zienkiewicz–Zhu error estimator on the convergence rate of the recovered solution. This shows that with superconvergent recovery the effectivity index tends asymptotically to unity. The superconvergent recovery technique developed in the first part of the paper 1 is the used in the computation of the Zienkiewicz–Zhu error estimator to demonstrate accurate estimation of the exact error attainable. Numerical tests are shown for various element types illustrating the excellent effectivity of the error estimator in the energy norm and pointwise gradient (stress) error estimation. Several examples of the performance of the error estimator in adaptive mesh refinement are also presented.

Advanced Numerical Methods in Computational MathematicsNumerical methods in engineeringElectromagnetic Simulation and Numerical MethodsSuperconvergenceEstimatorPointwiseA priori and a posterioriMathematicsApplied mathematicsRate of convergenceNorm (philosophy)ComputationConvergence (economics)
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References
The superconvergent patch recovery and <i>a posteriori</i> error estimates. Part 1: The recovery technique
International Journal for Numerical Methods in Engineering · 1992 · 1,975 citations
Local and global smoothing of discontinuous finite element functions using a least squares method
International Journal for Numerical Methods in Engineering · 1974 · 614 citations
<i>A posteriori</i> error analysis and adaptive processes in the finite element method: Part I—error analysis
International Journal for Numerical Methods in Engineering · 1983 · 524 citations
A simple error estimator and adaptive procedure for practical engineerng analysis
International Journal for Numerical Methods in Engineering · 1987 · 2,372 citations
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