Error estimates for a vorticity-based velocity-stress formulation of the Stokes eigenvalue problem
Abstract
The aim of this paper is to analyze a mixed formulation for the two dimensional Stokes eigenvalue problem where the unknowns are the stress and the velocity, whereas the pressure can be recovered with a simple postprocess of the stress. The stress tensor is written in terms of the vorticity of the fluid, leading to an alternative mixed formulation that incorporates this physical feature. We propose a mixed numerical method where the stress is approximated with suitable Nedelec finite elements, whereas the velocity is approximated with piecewise polynomials of degree k >= 0. With the aid of the compact operators theory we derive convergence of the method and spectral correctness. Moreover, we propose a reliable and efficient a posteriori error estimator for our spectral problem in order to provide an adaptive strategy to achieve the optimal order of convergence for non sufficient smooth eigenfunctions. We report numerical tests where the spectrum is computed, together with a computational analysis for the proposed estimator. In addition, we use the corresponding error estimator to drive an adaptive scheme, and we report the results of a numerical test, that allow us to assess the performance of this approach. (C) 2022 Elsevier B.V. All rights reserved.
Más información
Título según WOS: | Error estimates for a vorticity-based velocity-stress formulation of the Stokes eigenvalue problem |
Título de la Revista: | JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS |
Volumen: | 420 |
Editorial: | ELSEVIER SCIENCE BV |
Fecha de publicación: | 2023 |
DOI: |
10.1016/j.cam.2022.114798 |
Notas: | ISI |