English

A Tropical Atmosphere Model with Moisture: Global Well-posedness and Relaxation Limit

Analysis of PDEs 2016-08-24 v1 Atmospheric and Oceanic Physics Fluid Dynamics Geophysics

Abstract

In this paper, we consider a nonlinear interaction system between the barotropic mode and the first baroclinic mode of the tropical atmosphere with moisture; that was derived in [Frierson, D.M.W.; Majda, A.J.; Pauluis, O.M.: Dynamics of precipitation fronts in the tropical atmosphere: a novel relaxation limit, Commum. Math. Sci., 2 (2004), 591-626.] We establish the global existence and uniqueness of strong solutions to this system, with initial data in H1H^1, for each fixed convective adjustment relaxation time parameter ε>0\varepsilon>0. Moreover, if the initial data enjoy slightly more regularity than H1H^1, then the unique strong solution depends continuously on the initial data. Furthermore, by establishing several appropriate ε\varepsilon-independent estimates, we prove that the system converges to a limiting system, as the relaxation time parameter ε\varepsilon tends to zero, with convergence rate of the order O(ε)O(\sqrt\varepsilon). Moreover, the limiting system has a unique global strong solution, for any initial data in H1H^1, and such unique strong solution depends continuously on the initial data if the the initial data posses slightly more regularity than H1H^1. Notably, this solves the VISCOUS VERSION of an open problem proposed in the above mentioned paper of Frierson, Majda and Pauluis.

Keywords

Cite

@article{arxiv.1507.05231,
  title  = {A Tropical Atmosphere Model with Moisture: Global Well-posedness and Relaxation Limit},
  author = {Jinkai Li and Edriss S. Titi},
  journal= {arXiv preprint arXiv:1507.05231},
  year   = {2016}
}