English

Entropy Hierarchies for equations of compressible fluids and self-organized dynamics

Analysis of PDEs 2019-08-07 v1 Mathematical Physics math.MP Fluid Dynamics

Abstract

We develop a method of obtaining a hierarchy of new higher-order entropies in the context of compressible models with local and non-local diffusion and isentropic pressure. The local viscosity is allowed to degenerate as the density approaches vacuum. The method provides a tool to propagate initial regularity of classical solutions provided no vacuum has formed and serves as an alternative to the classical energy method. We obtain a series of global well-posedness results for state laws in previously uncovered cases including p(ρ)=cpρp(\rho) = c_p \rho. As an application we prove global well-posedness of collective behavior models with pressure arising from agent-based Cucker-Smale system.

Keywords

Cite

@article{arxiv.1908.01784,
  title  = {Entropy Hierarchies for equations of compressible fluids and self-organized dynamics},
  author = {Peter Constantin and Theodore D. Drivas and Roman Shvydkoy},
  journal= {arXiv preprint arXiv:1908.01784},
  year   = {2019}
}

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16 pages