English

Invariant measures for passive scalars in the small noise inviscid limit

Analysis of PDEs 2016-10-12 v3 Dynamical Systems

Abstract

We consider a class of invariant measures for a passive scalar ff driven by an incompressible velocity field u\boldsymbol{u}, on a dd-dimensional periodic domain, satisfying tf+uf=0,f(0)=f0. \partial_t f + \boldsymbol{u} \cdot \nabla f = 0, \qquad f(0)=f_0. The measures are obtained as limits of stochastic viscous perturbations. We prove that the span of the H1H^1 eigenfunctions of the operator u\boldsymbol{u}\cdot\nabla contains the support of these measures. We also analyze several explicit examples: when u\boldsymbol{u} is a shear flow or a relaxation enhancing flow (a generalization of weakly mixing), we can characterize the limiting measure uniquely and compute its covariance structure. We also consider the case of two-dimensional cellular flows, for which further regularity properties of the functions in the support of the measure can be deduced. The main results are proved with the use of spectral theory results, in particular the RAGE theorem, which are used to characterize large classes of orbits of the inviscid problem that are growing in H1H^1.

Keywords

Cite

@article{arxiv.1505.07356,
  title  = {Invariant measures for passive scalars in the small noise inviscid limit},
  author = {Jacob Bedrossian and Michele Coti Zelati and Nathan Glatt-Holtz},
  journal= {arXiv preprint arXiv:1505.07356},
  year   = {2016}
}

Comments

24 pages, 1 figure. V2: fixed the proof of Corollary 2.4