A generalized Hessian-based error estimator for an IPDG formulation of the biharmonic problem in two dimensions
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arXiv
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| Autori principali: | , , |
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| Natura: | Preprint |
| Pubblicazione: |
2025
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| _version_ | 1866914204922937344 |
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| author | Chaumont-Frelet, Théophile Gedicke, Joscha Mascotto, Lorenzo |
| author_facet | Chaumont-Frelet, Théophile Gedicke, Joscha Mascotto, Lorenzo |
| contents | We consider a two dimensional biharmonic problem and its discretization by means of a symmetric interior penalty discontinuous Galerkin method. A novel split of an error measure based on a generalized Hessian into two terms measuring the conformity and nonconformity of the scheme is proven. This splitting is the departing point for the design of a new error estimator, which is provably reliable and efficient for polynomial degree larger than~$3$, and does not involve any DG stabilization. Such an error estimator can be bounded from above by the standard DG residual error estimator. Numerical results assess the theoretical predictions, including the efficiency of the proposed estimator, for all polynomial degrees larger than or equal to~$2$. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2507_05776 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | A generalized Hessian-based error estimator for an IPDG formulation of the biharmonic problem in two dimensions Chaumont-Frelet, Théophile Gedicke, Joscha Mascotto, Lorenzo Numerical Analysis 65N12, 65N30, 65N50 We consider a two dimensional biharmonic problem and its discretization by means of a symmetric interior penalty discontinuous Galerkin method. A novel split of an error measure based on a generalized Hessian into two terms measuring the conformity and nonconformity of the scheme is proven. This splitting is the departing point for the design of a new error estimator, which is provably reliable and efficient for polynomial degree larger than~$3$, and does not involve any DG stabilization. Such an error estimator can be bounded from above by the standard DG residual error estimator. Numerical results assess the theoretical predictions, including the efficiency of the proposed estimator, for all polynomial degrees larger than or equal to~$2$. |
| title | A generalized Hessian-based error estimator for an IPDG formulation of the biharmonic problem in two dimensions |
| topic | Numerical Analysis 65N12, 65N30, 65N50 |
| url | https://arxiv.org/abs/2507.05776 |