A posteriori error estimators for stabilized P1 nonconforming approximation of the Stokes problem
In this paper we derive and analyze some a posteriori error estimators for the stabilized P1 nonconforming approximation of the Stokes problem involving the strain tensor. This will be done by decomposing the numerical error in a proper way into conforming and nonconforming contributions. The error...
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Published in | Computer methods in applied mechanics and engineering Vol. 199; no. 45; pp. 2903 - 2912 |
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15.11.2010
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Abstract | In this paper we derive and analyze some a posteriori error estimators for the stabilized
P1 nonconforming approximation of the Stokes problem involving the strain tensor. This will be done by decomposing the numerical error in a proper way into conforming and nonconforming contributions. The error estimator for the nonconforming error is obtained in the standard way, and the implicit error estimator for the conforming error is derived by applying the equilibrated residual method. A crucial part of this work is construction of approximate normal stresses on interelement boundaries which will serve as equilibrated Neumann data for local Stokes problems. It turns out that such normal stresses can be simply computed by local weak residuals of the discrete system plus jumps of the velocity solution and that a stronger equilibration condition is satisfied to ensure solvability of local Stokes problems. We also derive a simple explicit error estimator based on the nonsymmetric tensor recovery of the normal stress error. Numerical results are provided to illustrate the performance of our error estimators. |
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AbstractList | In this paper we derive and analyze some a posteriori error estimators for the stabilized
P1 nonconforming approximation of the Stokes problem involving the strain tensor. This will be done by decomposing the numerical error in a proper way into conforming and nonconforming contributions. The error estimator for the nonconforming error is obtained in the standard way, and the implicit error estimator for the conforming error is derived by applying the equilibrated residual method. A crucial part of this work is construction of approximate normal stresses on interelement boundaries which will serve as equilibrated Neumann data for local Stokes problems. It turns out that such normal stresses can be simply computed by local weak residuals of the discrete system plus jumps of the velocity solution and that a stronger equilibration condition is satisfied to ensure solvability of local Stokes problems. We also derive a simple explicit error estimator based on the nonsymmetric tensor recovery of the normal stress error. Numerical results are provided to illustrate the performance of our error estimators. In this paper we derive and analyze some a posteriori error estimators for the stabilized P1 nonconforming approximation of the Stokes problem involving the strain tensor. This will be done by decomposing the numerical error in a proper way into conforming and nonconforming contributions. The error estimator for the nonconforming error is obtained in the standard way, and the implicit error estimator for the conforming error is derived by applying the equilibrated residual method. A crucial part of this work is construction of approximate normal stresses on interelement boundaries which will serve as equilibrated Neumann data for local Stokes problems. It turns out that such normal stresses can be simply computed by local weak residuals of the discrete system plus jumps of the velocity solution and that a stronger equilibration condition is satisfied to ensure solvability of local Stokes problems. We also derive a simple explicit error estimator based on the nonsymmetric tensor recovery of the normal stress error. Numerical results are provided to illustrate the performance of our error estimators. |
Author | Lee, Hyung-Chun Kim, Kwang-Yeon |
Author_xml | – sequence: 1 givenname: Hyung-Chun surname: Lee fullname: Lee, Hyung-Chun email: hclee@ajou.ac.kr organization: Department of Mathematics, Ajou University, Suwon 443-749, South Korea – sequence: 2 givenname: Kwang-Yeon surname: Kim fullname: Kim, Kwang-Yeon email: eulerkim@kangwon.ac.kr organization: Department of Mathematics, Kangwon National University, Chuncheon 200-701, South Korea |
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Cites_doi | 10.1007/BF01390056 10.1137/S0036142902405217 10.1016/j.cam.2010.05.032 10.1016/j.cma.2003.11.008 10.1090/S0025-5718-1995-1284666-9 10.1093/imanum/drm008 10.1090/S0025-5718-03-01579-5 10.1007/s002110100348 10.1137/0720033 10.1016/j.apnum.2006.09.010 10.1002/nme.228 10.1016/0045-7825(90)90170-Q 10.1051/m2an:2003020 10.1137/S0036142994264092 10.1016/S0898-1221(99)00254-0 10.1051/m2an:2002022 10.1137/0727086 10.1090/S0025-5718-00-01264-3 10.1137/S0036142905444482 10.1007/BF01385723 10.1090/S0025-5718-05-01743-6 10.1090/S0025-5718-06-01903-X 10.1137/S1064827598333715 10.1137/060665993 10.1051/m2an/197307R300331 10.1051/m2an:2000110 |
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Keywords | Equilibrated residual method 65N15 A posteriori error estimator Stokes problem Stabilized P1 nonconforming finite element method 65N50 65N30 Neumann problem Partial differential equations Error estimation method Non conforming finite element Error bound Automatic mesh generation Stabilized P1 nonconforming finite element Galerkin-Petrov method Incompressible flow Normal stress A posteriori estimation Boundary-value problems Solvability |
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Snippet | In this paper we derive and analyze some a posteriori error estimators for the stabilized
P1 nonconforming approximation of the Stokes problem involving the... In this paper we derive and analyze some a posteriori error estimators for the stabilized P1 nonconforming approximation of the Stokes problem involving the... |
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SubjectTerms | A posteriori error estimator Approximation Balancing Computational techniques Equilibrated residual method Errors Estimators Exact sciences and technology Finite-element and galerkin methods Fluid dynamics Fluid flow Fundamental areas of phenomenology (including applications) General theory Mathematical analysis Mathematical methods in physics Mathematical models Physics Solid mechanics Stabilized P1 nonconforming finite element method Static elasticity (thermoelasticity...) Stokes problem Stresses Structural and continuum mechanics |
Title | A posteriori error estimators for stabilized P1 nonconforming approximation of the Stokes problem |
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