A posteriori error estimates and space-time adaptivity for parabolic partial differential equations on stationary surfaces
B. Kovács, M.F.R. Lantelme, ArXiv:2407.02101 (2024).
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Abstract
This paper develops and discusses a residual-based a posteriori error
estimate and a space--time adaptive algorithm for solving parabolic surface
partial differential equations on closed stationary surfaces. The full
discretization uses the surface finite element method in space and the backward
Euler method in time. The proposed error indicator bounds the error quantities
globally in space from above and below, and globally in time from above and
locally from below. A space--time adaptive algorithm is proposed using the
derived error indicator. Numerical experiments illustrate and complement the
theory.
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arXiv:2407.02101
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Kovács B, Lantelme MFR. A posteriori error estimates and space-time adaptivity for parabolic partial differential equations on stationary surfaces. arXiv:240702101. Published online 2024.
Kovács, B., & Lantelme, M. F. R. (2024). A posteriori error estimates and space-time adaptivity for parabolic partial differential equations on stationary surfaces. In arXiv:2407.02101.
@article{Kovács_Lantelme_2024, title={A posteriori error estimates and space-time adaptivity for parabolic partial differential equations on stationary surfaces}, journal={arXiv:2407.02101}, author={Kovács, Balázs and Lantelme, Michael Frederik Raúl}, year={2024} }
Kovács, Balázs, and Michael Frederik Raúl Lantelme. “A Posteriori Error Estimates and Space-Time Adaptivity for Parabolic Partial Differential Equations on Stationary Surfaces.” ArXiv:2407.02101, 2024.
B. Kovács and M. F. R. Lantelme, “A posteriori error estimates and space-time adaptivity for parabolic partial differential equations on stationary surfaces,” arXiv:2407.02101. 2024.
Kovács, Balázs, and Michael Frederik Raúl Lantelme. “A Posteriori Error Estimates and Space-Time Adaptivity for Parabolic Partial Differential Equations on Stationary Surfaces.” ArXiv:2407.02101, 2024.