Some a posteriori error estimators for elliptic partial differential equations

Author:

Bank R. E.,Weiser A.

Abstract

We present three new a posteriori error estimators in the energy norm for finite element solutions to elliptic partial differential equations. The estimators are based on solving local Neumann problems in each element. The estimators differ in how they enforce consistency of the Neumann problems. We prove that as the mesh size decreases, under suitable assumptions, two of the error estimators approach upper bounds on the norm of the true error, and all three error estimators are within multiplicative constants of the norm of the true error. We present numerical results in which one of the error estimators appears to converge to the norm of the true error.

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,Computational Mathematics,Algebra and Number Theory

Reference16 articles.

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2. I. Babuška, Private Communication.

3. I. Babuška & M. Luskin, "An adaptive time discretization procedure for parabolic problems," in Proc. Fourth IMACS Internat. Sympos. on Computer Methods for Partial Differential Equations, Lehigh University, Bethlehem, Pennsylvania, 1981, pp. 5-8.

4. I. Babuška & A. Miller, A Posteriori Error Estimates and Adaptive Techniques for the Finite Element Method, Technical Report BN-968, Institute for Physical Science and Technology, University of Maryland, 1981.

5. A posteriori error analysis of finite element solutions for one-dimensional problems;Babuška, Ivo;SIAM J. Numer. Anal.,1981

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