Strong sensitivity of Southern Ocean carbon uptake and nutrient cycling to wind stirring

Type Article
Date 2014
Language English
Author(s) Rodgers K. B.1, Aumont Olivier2, Fletcher S. E. Mikaloff3, Plancherel Y.4, Bopp L.5, de Boyer Montegut ClementORCID6, Iudicone D.7, Keeling R. F.8, Madec Gerard9, 10, Wanninkhof R.11
Affiliation(s) 1 : Princeton Univ, AOS Program, Princeton, NJ 08544 USA.
2 : IRD, Plouzane, France.
3 : NIWA, Wellington, New Zealand.
4 : Univ Oxford, Dept Earth Sci, Oxford OX1 3PR, England.
5 : UVSQ, CEA, CNRS, IPSL,LSCE, Gif Sur Yvette, France.
6 : IFREMER, Ctr Brest, Lab Oceanog Spatiale, Plouzane, France.
7 : Stn Zool Anton Dohrn, Naples, Italy.
8 : Univ Calif San Diego, Scripps Inst Oceanog, San Diego, CA USA.
9 : UPMC, MNHN, IPSL, LOCEAN,CNRS,IRD, Paris, France.
10 : Natl Oceanog Ctr, Southampton, Hants, England.
11 : NOAA, Atlantic Oceanog & Meteorol Lab, Miami, FL 33149 USA.
Source Biogeosciences (1726-4170) (Copernicus Gesellschaft Mbh), 2014 , Vol. 11 , N. 15 , P. 4077-4098
DOI 10.5194/bg-11-4077-2014
WOS© Times Cited 29
Abstract Here we test the hypothesis that winds have an important role in determining the rate of exchange of CO2 between the atmosphere and ocean through wind stirring over the Southern Ocean. This is tested with a sensitivity study using an ad hoc parameterization of wind stirring in an ocean carbon cycle model, where the objective is to identify the way in which perturbations to the vertical density structure of the planetary boundary in the ocean impacts the carbon cycle and ocean biogeochemistry. Wind stirring leads to reduced uptake of CO2 by the Southern Ocean over the period 2000-2006, with a relative reduction with wind stirring on the order of 0.9 Pg C yr(-1) over the region south of 45 degrees S. This impacts not only the mean carbon uptake, but also the phasing of the seasonal cycle of carbon and other ocean biogeochemical tracers. Enhanced wind stirring delays the seasonal onset of stratification, and this has large impacts on both entrainment and the biological pump. It is also found that there is a strong reduction on the order of 25-30% in the concentrations of NO3 exported in Subantarctic Mode Water (SAMW) to wind stirring. This finds expression not only locally over the Southern Ocean, but also over larger scales through the impact on advected nutrients. In summary, the large sensitivity identified with the ad hoc wind stirring parameterization offers support for the importance of wind stirring for global ocean biogeochemistry through its impact over the Southern Ocean.
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Rodgers K. B., Aumont Olivier, Fletcher S. E. Mikaloff, Plancherel Y., Bopp L., de Boyer Montegut Clement, Iudicone D., Keeling R. F., Madec Gerard, Wanninkhof R. (2014). Strong sensitivity of Southern Ocean carbon uptake and nutrient cycling to wind stirring. Biogeosciences, 11(15), 4077-4098. Publisher's official version : https://doi.org/10.5194/bg-11-4077-2014 , Open Access version : https://archimer.ifremer.fr/doc/00211/32236/