Upwind summation-by-parts finite differences: error estimates and WENO methodology

Fuente: arXiv
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Main Authors: Jiang, Yan, Wang, Siyang
Format: Preprint
Published: 2023
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_version_ 1866913391000420352
author Jiang, Yan
Wang, Siyang
author_facet Jiang, Yan
Wang, Siyang
contents High order upwind summation-by-parts finite difference operators have recently been developed. When combined with the simultaneous-approximation-term method to impose boundary conditions, the method converges faster than using traditional summation-by-parts operators. We prove the convergence rate by the normal mode analysis for such methods for a class of hyperbolic partial differential equations. Our analysis shows that the penalty parameter for imposing boundary conditions affects the convergence rate for stable methods. In addition, to solve problems with discontinuous data, we extend the method to also have the weighted essentially nonoscillatory property. The overall method is stable, achieves high order accuracy for smooth problems, and is capable of solving problems with discontinuities.
format Preprint
id arxiv_https___arxiv_org_abs_2312_11452
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Upwind summation-by-parts finite differences: error estimates and WENO methodology
Jiang, Yan
Wang, Siyang
Numerical Analysis
65M12
High order upwind summation-by-parts finite difference operators have recently been developed. When combined with the simultaneous-approximation-term method to impose boundary conditions, the method converges faster than using traditional summation-by-parts operators. We prove the convergence rate by the normal mode analysis for such methods for a class of hyperbolic partial differential equations. Our analysis shows that the penalty parameter for imposing boundary conditions affects the convergence rate for stable methods. In addition, to solve problems with discontinuous data, we extend the method to also have the weighted essentially nonoscillatory property. The overall method is stable, achieves high order accuracy for smooth problems, and is capable of solving problems with discontinuities.
title Upwind summation-by-parts finite differences: error estimates and WENO methodology
topic Numerical Analysis
65M12
url https://arxiv.org/abs/2312.11452