English

A non-autonomous model problem for the Oseen-Navier-Stokes flow with rotating effects

Analysis of PDEs 2011-07-05 v2

Abstract

Consider the Navier-Stokes flow past a rotating obstacle with a general time-dependent angular velocity and a time-dependent outflow condition at infinity. After rewriting the problem on a fixed domain, one obtains a non-autonomous system of equations with unbounded drift terms. It is shown that the solution to a model problem in the whole space case Rd\R^d is governed by a strongly continuous evolution system on Lσp(Rd)L^p_\sigma(\R^d) for 1<p<1<p<\infty. The strategy is to derive a representation formula, similar to the one known in the case of non-autonomous Ornstein-Uhlenbeck equations. This explicit formula allows to prove LpL^p-LqL^q estimates and gradient estimates for the evolution system. These results are key ingredients to obtain (local) mild solutions to the full nonlinear problem by a version of Kato's iteration scheme.

Keywords

Cite

@article{arxiv.1006.3618,
  title  = {A non-autonomous model problem for the Oseen-Navier-Stokes flow with rotating effects},
  author = {Matthias Geissert and Tobias Hansel},
  journal= {arXiv preprint arXiv:1006.3618},
  year   = {2011}
}

Comments

8 pages

R2 v1 2026-06-21T15:38:00.579Z