Seasonality of the submesoscale dynamics in the Gulf Stream region

被引:172
作者
Mensa, Jean Alberto [1 ]
Garraffo, Zulema [2 ]
Griffa, Annalisa [1 ,3 ]
Oezgoekmen, Tamay Mehmet [1 ]
Haza, Angelique [1 ]
Veneziani, Milena [4 ]
机构
[1] Univ Miami, RSMAS, Miami, FL 33149 USA
[2] NOAA, IMSG, EMC, NCWCP, College Pk, MD 20740 USA
[3] UOS Pozzuolo di Lerici SP, CNR, ISMAR, I-10932 Lerici, La Spezia, Italy
[4] Los Alamos Natl Lab, Div Fluid Dynam & Solid Mech MSB216 T3, Los Alamos, NM 87545 USA
基金
美国国家科学基金会;
关键词
Submesoscale; Seasonality; Frontogenesis; Mixed layer instabilities; Ageostrophic dynamics; Gulf Stream; HYCOM; Multi-scale; MIXED-LAYER INSTABILITIES; CALIFORNIA CURRENT SYSTEM; AIR-SEA FLUXES; NORTH-ATLANTIC; BAROCLINIC INSTABILITY; NUMERICAL-SIMULATION; VERTICAL COORDINATE; OCEAN FRONTS; PART II; MODEL;
D O I
10.1007/s10236-013-0633-1
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Frontogenesis and frontal instabilities in the mixed layer are known to be important processes in the formation of submesoscale features. We study the seasonality of such processes in the Gulf Stream (GS) region. To approach this problem, a realistic simulation with the Hybrid Coordinate Ocean Model is integrated for 18 months at two horizontal resolutions: a high-resolution (1/48A degrees) simulation able to resolve part of the submesoscale regime and the full range of mesoscale dynamics, and a coarser resolution (1/12A degrees) case, in which submesoscales are not resolved. Results provide an insight into submesoscale dynamics in the complex GS region. A clear seasonal cycle is observed, with submesoscale features mostly present during winter. The submesoscale field is quantitatively characterized in terms of deviation from geostrophy and 2D dynamics. The limiting and controlling factor in the occurrence of submesoscales appears to be the depth of the mixed layer, which controls the reservoir of available potential energy available at the mesoscale fronts that are present most of the year. Atmospheric forcings are the main energy source behind submesoscale formation, but mostly indirectly through mixed layer deepening. The mixed layer instability scaling suggested in the (Fox-Kemper et al., J Phys Oceanogr 38:1145-1165, 2008) parametrization appears to hold, indicating that the parametrization is appropriate even in this complex and mesoscale dominated area.
引用
收藏
页码:923 / 941
页数:19
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