Barotropic and baroclinic processes in the transport variability of the Antarctic Circumpolar Current

被引:0
作者
Dirk Olbers
Karsten Lettmann
机构
[1] Alfred Wegener Institute for Polar and Marine Research,
来源
Ocean Dynamics | 2007年 / 57卷
关键词
Antarctic circumpolar current; ACC transport; Coherence patterns;
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摘要
Synoptic scale variability of the Southern Ocean wind field in the high-frequency range of barotropic Rossby waves results in transport variations of the Antarctic Circumpolar Current (ACC), which are highly coherent with the bottom pressure field all around the Antarctic continent. The coherence pattern, in contrast to the steady state ACC, is steered by the geostrophic f/h contours passing through Drake Passage and circling closely around the continent. At lower frequencies, with interannual and decadal periods, the correlation with the bottom pressure continues, but baroclinic processes gain importance. For periods exceeding a few years, variations of the ACC transport are in geostrophic balance with the pressure field associated with the baroclinic potential energy stored in the stratification, whereas bottom pressure plays a minor role. The low-frequency variability of the ACC transport is correlated with the baroclinic state variable in the entire Southern Ocean, mediated by baroclinic topographic–planetary Rossby waves that are not bound to f/h contours. To clarify the processes of wave dynamics and pattern correlation, we apply a circulation model with simplified physics (the barotropic–baroclinic-interaction model BARBI) and use two types of wind forcing: the National Centers for Environmental Prediction (NCEP) wind field with integrations spanning three decades and an artificial wind field constructed from the first three empirical orthogonal functions of NCEP combined with a temporal variability according to an autoregressive process. Experiments with this Southern Annular Mode type forcing have been performed for 1,800 years. We analyze the spin-up, trends, and variability of the model runs. Particular emphasis is placed on coherence and correlation patterns between the ACC transport, the wind forcing, the bottom pressure field and the pressure associated with the baroclinic potential energy. A stochastic dynamical model is developed that describes the dominant barotropic and baroclinic processes and represents the spectral properties for a wide range of frequencies, from monthly periods to hundreds of years.
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页码:559 / 578
页数:19
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[1]  
Aoki S(2002)Coherent sea level response to the antarctic oscillation Geophys Res Lett 29 1950-2540
[2]  
Borowski D(2002)Thermohaline and wind forcing of a circumpolar channel with blocked geostrophic contours J Phys Oceanogr 32 2520-1216
[3]  
Gerdes R(1979)Multiple flow equilibra in the atmosphere and blocking J Atmos Sci 36 1205-310
[4]  
Olbers D(2007)Surface geostrophic currents across the Antarctic Circumpolar Current in drake passage from 1992 to 2004 Prog Oceanogr 73 296-2712
[5]  
Charney JG(2003)Transport and variability of the Antarctic Circumpolar Current in Drake Passage J Geophys Res 108 8084-428
[6]  
DeVore JG(2001)What sets the mean transport through Drake Passage? J Geophys Res 106 2693-3057
[7]  
Cunningham S(1999)Evaluating southern ocean response to wind forcing Physics And Chemistry Of The Earth Part A Solid Earth Geodesy 24 423-998
[8]  
Pavic M(2002)Synchronous variability in the southern hemisphere atmosphere, sea ice, and ocean resulting from the annular mode J Clim 15 3043-2252
[9]  
Cunningham SA(1997)Localized coupling between surface- and bottom-intensified flow over topography J Phys Oceanogr 27 977-485
[10]  
Alderson SG(2006)The role of eddies in determining the structure and response of the wind-driven southern hemisphere overturning: results from the Modeling Eddies in the Southern Ocean (MESO) project J Phys Oceanogr 36 2232-901