Fully computable a posteriori error estimates for the Stokes equation without the global inf–sup constant

In this paper we consider the a posteriori error estimates for the Stokes equation which provide computable upper bounds on the actual errors. It is known that such error estimates typically involve the global inf–sup constant which can be quite tricky to find and lead to extra difficulty in numeric...

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Published inComputers & mathematics with applications (1987) Vol. 67; no. 3; pp. 681 - 691
Main Author Kim, Kwang-Yeon
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.02.2014
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Abstract In this paper we consider the a posteriori error estimates for the Stokes equation which provide computable upper bounds on the actual errors. It is known that such error estimates typically involve the global inf–sup constant which can be quite tricky to find and lead to extra difficulty in numerical computations. To resolve this difficulty, we propose a new error estimate which relies only upon the inf–sup constants local to the subdomains forming a partition of the original domain. Hence our new error estimate is fully computable whenever the subdomains are simple enough to make the local inf–sup constants readily available, and moreover, provides a sharper upper bound than the previous estimate when these local constants are bigger than the global constant. Application to the Crouzeix–Raviart and Fortin–Soulie nonconforming finite elements is presented along with some effective minimization technique for further improvement of the upper bound on the error. Finally, numerical experiments are carried out to investigate the performance of the new error estimate.
AbstractList In this paper we consider the a posteriori error estimates for the Stokes equation which provide computable upper bounds on the actual errors. It is known that such error estimates typically involve the global inf–sup constant which can be quite tricky to find and lead to extra difficulty in numerical computations. To resolve this difficulty, we propose a new error estimate which relies only upon the inf–sup constants local to the subdomains forming a partition of the original domain. Hence our new error estimate is fully computable whenever the subdomains are simple enough to make the local inf–sup constants readily available, and moreover, provides a sharper upper bound than the previous estimate when these local constants are bigger than the global constant. Application to the Crouzeix–Raviart and Fortin–Soulie nonconforming finite elements is presented along with some effective minimization technique for further improvement of the upper bound on the error. Finally, numerical experiments are carried out to investigate the performance of the new error estimate.
Author Kim, Kwang-Yeon
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CitedBy_id crossref_primary_10_1002_num_22083
crossref_primary_10_1007_s10915_014_9943_9
crossref_primary_10_1016_j_camwa_2018_03_018
crossref_primary_10_1002_num_22056
crossref_primary_10_1002_num_22741
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Issue 3
Keywords Inf–sup condition
A posteriori error estimation
Stokes equation
Nonconforming finite element method
Computable upper bound
Language English
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Snippet In this paper we consider the a posteriori error estimates for the Stokes equation which provide computable upper bounds on the actual errors. It is known that...
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elsevier
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StartPage 681
SubjectTerms A posteriori error estimation
Computable upper bound
Inf–sup condition
Nonconforming finite element method
Stokes equation
Title Fully computable a posteriori error estimates for the Stokes equation without the global inf–sup constant
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