A Blow-Up Criterion for the 3D Euler Equations Via the Euler-Voigt Inviscid Regularization
Analysis of PDEs
2015-07-30 v1 Numerical Analysis
Abstract
We propose a new blow-up criterion for the 3D Euler equations of incompressible fluid flows, based on the 3D Euler-Voigt inviscid regularization. This criterion is similar in character to a criterion proposed in a previous work by the authors, but it is stronger, and better adapted for computational tests. The 3D Euler-Voigt equations enjoy global well-posedness, and moreover are more tractable to simulate than the 3D Euler equations. A major advantage of these new criteria is that one only needs to simulate the 3D Euler-Voigt, and not the 3D Euler equations, to test the blow-up criteria, for the 3D Euler equations, computationally.
Keywords
Cite
@article{arxiv.1507.08203,
title = {A Blow-Up Criterion for the 3D Euler Equations Via the Euler-Voigt Inviscid Regularization},
author = {Adam Larios and Edriss S. Titi},
journal= {arXiv preprint arXiv:1507.08203},
year = {2015}
}