IMIS

Publicaties | Instituten | Personen | Datasets | Projecten | Kaarten | Infrastructuur
[ meld een fout in dit record ]mandje (0): toevoegen | toon Print deze pagina

Self-organized criticality in geophysical turbulence
Smyth, W.D.; Nash, J.D.; Mounm, J.N. (2019). Self-organized criticality in geophysical turbulence. NPG Scientific Reports 9(1): 8 pp. https://dx.doi.org/10.1038/s41598-019-39869-w
In: Scientific Reports (Nature Publishing Group). Nature Publishing Group: London. ISSN 2045-2322; e-ISSN 2045-2322, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Auteurs  Top 
  • Smyth, W.D.
  • Nash, J.D.
  • Mounm, J.N.

Abstract
    Turbulence in geophysical flows tends to organize itself so that the mean flow remains close to a stability boundary in parameter space. That characteristic suggests self-organized criticality (SOC), a statistical property that has been identified in a range of complex phenomena including earthquakes, forest fires and solar flares. This note explores the relationship between the properties of forced, sheared, stratified turbulence (as found in oceans, atmospheres and other geophysical fluids) and those of SOC. Self-organization to the critical state is demonstrated in a wide range of cases drawn mostly (but not entirely) from in situ observations of ocean turbulence. Turbulent events in the ocean also exhibit a second characteristic associated with SOC: their sizes follow a power-law distribution indicating self-similarity. These results suggest SOC as a new conceptual foundation for the study of geophysical turbulence, an explanation for the mixing efficiency of ocean turbulence and a potential for cross-fertilization with other areas of geophysics.

Alle informatie in het Integrated Marine Information System (IMIS) valt onder het VLIZ Privacy beleid Top | Auteurs