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Annular modes in a multiple migrating zonal jet regime (CROSBI ID 136823)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Chan, Cegeon J. ; Plumb, R. Alan ; Cerovečki, Ivana Annular modes in a multiple migrating zonal jet regime // Journal of the atmospheric sciences, 64 (2007), 11; 4053-4068. doi: 10.1175/2007JAS2156.1

Podaci o odgovornosti

Chan, Cegeon J. ; Plumb, R. Alan ; Cerovečki, Ivana

engleski

Annular modes in a multiple migrating zonal jet regime

The authors investigate the dynamics of zonal jets in a semihemisphere zonally reentrant ocean model. The forcings imposed in the model are an idealized atmospheric wind stress and relaxation to a latitudinal temperature profile held constant in time. While there are striking similarities to the observed atmospheric annular modes, where the leading mode of variability is associated with the primary zonal jet's meridional undulation, secondary (weaker) jets emerge and systematically migrate equatorward. The model output suggests the following mechanism for the equatorward migration: while the eddy momentum fluxes sustain the jets, the eddy heat fluxes have a poleward bias causing an anomalous residual circulation with poleward (equatorward) flow on the poleward (equatorward) flanks. By conservation of mass, there must be a rising residual flow at the jet. From the thermodynamics equation, the greatest cooling occurs at the jet core, thus creating a tendency to reduce the baroclinicity on the poleward flank, while enhancing it on the equatorward flank. Consequently, the baroclinic zone shifts, perpetuating the jet migration.

mean flow anomalies; poleward propagation; variability; circulation; instability; troposphere; eddied; index; ocean

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Podaci o izdanju

64 (11)

2007.

4053-4068

objavljeno

0022-4928

10.1175/2007JAS2156.1

Povezanost rada

Geologija

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