Nonlocal dissipation measure andL(1)kinetic theory for fractional conservation laws

Affiliation auteurs!!!! Error affiliation !!!!
TitreNonlocal dissipation measure andL(1)kinetic theory for fractional conservation laws
Type de publicationJournal Article
Year of Publication2020
AuteursAlibaud N, Andreianov B, Ouedraogo A
JournalCOMMUNICATIONS IN PARTIAL DIFFERENTIAL EQUATIONS
Volume45
Pagination1213-1251
Date PublishedSEP 1
Type of ArticleArticle
ISSN0360-5302
Mots-clésdissipation measure, fractional conservation law, Kinetic formulation, L(1)data, nonlinearity of porous medium kind, nonlocal and nonlinear diffusion, pure jump Levy operator, well-posedness
Résumé

We introduce a kinetic formulation for scalar conservation laws with nonlocal and nonlinear diffusion terms. We deal with merelyL(1)initial data, general self-adjoint pure jump Levy operators, and locally Lipschitz nonlinearities of porous medium kind possibly strongly degenerate. The cornerstone of the formulation and the uniqueness proof is an adequate explicit representation of the dissipation measure associated to the diffusion. This measure is afunction in our nonlocal framework. Our approach is inspired from the second order theory unlike the cutting technique previously introduced for bounded entropy solutions. The latter technique no longer seems to fit the kinetic setting. This is moreover the first time that the more standard and sharper tools of the second order theory are faithfully adapted to fractional conservation laws.

DOI10.1080/03605302.2020.1768542