English

Local Hadamard well-posedness results for the Navier-Stokes equations

Analysis of PDEs 2019-09-26 v1

Abstract

In this paper we consider classes of initial data that ensure local-in-time Hadamard well-posedness of the associated weak Leray-Hopf solutions of the three-dimensional Navier-Stokes equations. In particular, for any solenodial L2L_{2} initial data u0u_{0} belonging to certain subsets of VMO1(R3)VMO^{-1}(\mathbb{R}^3), we show that weak Leray-Hopf solutions depend continuously with respect to small divergence-free L2L_{2} perturbations of the initial data u0u_{0} (on some finite-time interval). Our main result is inspired and improves upon previous work of the author \cite{barker2018} and work of Jean-Yves Chemin \cite{chemin}. Our method builds upon \cite{barker2018} and \cite{chemin}. In particular our method hinges on decomposition results for the initial data inspired by Calder\'{o}n \cite{Calderon90} together with use of persistence of regularity results. The persistence of regularity statement presented may be of independent interest, since it does not rely upon the solution or the initial data being in the perturbative regime.

Keywords

Cite

@article{arxiv.1909.11568,
  title  = {Local Hadamard well-posedness results for the Navier-Stokes equations},
  author = {Tobias Barker},
  journal= {arXiv preprint arXiv:1909.11568},
  year   = {2019}
}