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On the role of numerical viscosity in the study of the local limit of nonlocal conservation laws

Academic Article
Publication Date:
2021
abstract:
We deal with the numerical investigation of the local limit of nonlocal conservation laws. Previous numerical experiments seem to suggest that the solutions of the nonlocal problems converge to the entropy admissible solution of the conservation law in the singular local limit. However, recent analytical results state that (i) in general convergence does not hold because one can exhibit counterexamples; (ii) convergence can be recovered provided viscosity is added to both the local and the nonlocal equations. Motivated by these analytical results, we investigate the role of numerical viscosity in the numerical study of the local limit of nonlocal conservation laws. In particular, we show that Lax-Friedrichs type schemes may provide the wrong intuition and erroneously suggest that the solutions of the nonlocal problems converge to the entropy admissible solution of the conservation law in cases where this is ruled out by analytical results. We also test Godunov type schemes, less affected by numerical viscosity, and show that in some cases they provide an intuition more in accordance with the analytical results.
Iris type:
01.01 Articolo in rivista
Keywords:
Numerical viscosity; nonlocal conservation law; nonlocal traffic models; nonlocal-to-local limit
List of contributors:
Spinolo, LAURA VALENTINA
Authors of the University:
SPINOLO LAURA VALENTINA
Handle:
https://iris.cnr.it/handle/20.500.14243/465068
Published in:
MODÉLISATION MATHÉMATIQUE ET ANALYSE NUMÉRIQUE (IMPR.)
Journal
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URL

https://www.esaim-m2an.org/articles/m2an/abs/2021/07/m2an190035/m2an190035.html
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