Bifurcation in eddy life cycles: Implications for storm track variability

By analyzing a number of very high resolution, nonhydrostatic experiments of baroclinic lifecycles, it was concluded that the intensity of the near-surface baroclinic development influences the upper-level wave to such an extent that it could produce cyclonic or anticyclonic wave breaking. Since the...

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Veröffentlicht in:Journal of the atmospheric sciences 2003-04, Vol.60 (8), p.993-1023
1. Verfasser: ORLANSKI, Isidoro
Format: Artikel
Sprache:eng
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Zusammenfassung:By analyzing a number of very high resolution, nonhydrostatic experiments of baroclinic lifecycles, it was concluded that the intensity of the near-surface baroclinic development influences the upper-level wave to such an extent that it could produce cyclonic or anticyclonic wave breaking. Since the final jet position is equatorward or poleward, the position depends on whether the waves break cyclonically or anticyclonically, respectively. The low-level baroclinicity plays a very important role in the outcome of the wave and feedback to the mean circulation. Using a shallow water model the hypothesis that the intensity of the eddy forcing from the lower layers of the atmosphere can have a profound effect on the disturbances of the upper layers is tested. From these experiments the following is concluded.
ISSN:0022-4928
1520-0469
DOI:10.1175/1520-0469(2003)60<993:bielci>2.0.co;2