English

Deterministic Chaos in Tropical Atmospheric Dynamics

comp-gas 2009-10-22 v1 Cellular Automata and Lattice Gases

Abstract

We examine an 11-year data set from the tropical weather station of Tlaxcala, Mexico. We find that mutual information drops quickly with the delay, to a positive value which relaxes to zero with a time scale of 20 days. We also examine the mutual dependence of the observables and conclude that the data set gives the equivalent of 8 variables per day, known to a precision of 2%2\%. We determine the effective dimension of the attractor to be Deff11.7D_{eff} \approx 11.7 at the scale 3.5%<R/Rmax<8%3.5\% < R/R_{max} < 8\%. We find evidence that the effective dimension increases as R/Rmax0R/R_{max} \to 0, supporting a conjecture by Lorenz that the climate system may consist of a large number of weakly coupled subsystems, some of which have low-dimensional attractors. We perform a local reconstruction of the dynamics in phase space; the short-term predictability is modest and agrees with theoretical estimates. Useful skill in predictions of 10-day rainfall accumulation anomalies reflects the persistence of weather patterns, which follow the 20-day decay rate of the mutual information.

Keywords

Cite

@article{arxiv.comp-gas/9410001,
  title  = {Deterministic Chaos in Tropical Atmospheric Dynamics},
  author = {H. Waelbroeck},
  journal= {arXiv preprint arXiv:comp-gas/9410001},
  year   = {2009}
}

Comments

41 pages in Plain TeX, with 10 figures avalaible in hardcopy on request to the author

R2 v1 2026-07-22T09:59:05.721Z