Uncertainty in the evolution of northwestern North Atlantic circulation leads to diverging biogeochemical projections

Author:

Rutherford KrystenORCID,Fennel KatjaORCID,Garcia Suarez LinaORCID,John Jasmin G.ORCID

Abstract

Abstract. The global ocean's coastal areas are rapidly experiencing the effects of climate change. These regions are highly dynamic, with relatively small-scale circulation features like shelf break currents playing an important role. Projections can produce widely diverging estimates of future regional circulation structures. Here, we use the northwestern North Atlantic, a hotspot of ocean warming, as a case study to illustrate how the uncertainty in future estimates of regional circulation manifests itself and affects projections of shelf-wide biogeochemistry. Two diverging climate model projections are considered and downscaled using a high-resolution regional model with intermediate biogeochemical complexity. The two resulting future scenarios exhibit qualitatively different circulation structures by 2075 where along-shelf volume transport is reduced by 70 % in one of them and while remaining largely unchanged in the other. The reduction in along-shelf transport creates localized areas with either amplified warming (+3 ∘C) and salinification (+0.25 units) or increased acidification (−0.25 units) in shelf bottom waters. Our results suggest that a wide range of outcomes is possible for continental margins and suggest a need for accurate projections of small-scale circulation features like shelf break currents in order to improve the reliability of biogeochemical projections.

Publisher

Copernicus GmbH

Reference63 articles.

1. Alexander, M. A., Shin, S. , Scott, J. D., Curchitser, E., and Stock, C.: The response of the northwest Atlantic ocean to climate change, J. Climate, 33, 405–428, https://doi.org/10.1175/JCLI-D-19-0117.1, 2020.

2. Anav, A., Friedlingstein, P., Kidston, M., Bopp, L., Ciais, P., Cox, P., Jones, C., Jung, M., Myneni, R., and Zhu, Z.: Evaluating the land and ocean components of the global carbon cycle in the CMIP5 Earth System Models, J. Climate, 26, 6801–6841, https://doi.org/10.1175/JCLI-D-12-00417.1, 2013.

3. Beardsley, R. C. and Boicourt, W. C.: On Estuarine and Continental-Shelf Circulation in the Middle Atlantic Bight, in: Evolution of Physical Oceanography, edited by: Warren, B. A. and Wunsch, C., MIT press, Cambridge, 198–233, ISBN 9780660291246, 1981.

4. Bernier, R. Y., Jamieson, R. E., and Moore, A. M.: State of the Atlantic Ocean Synthesis Report, Can. Tech. Rep. Fish. Aquat. Sci., Fisheries and Oceans Canada, Moncton, MB, 3167m iii+149 pp., ISBN 9780660291246, 2018.

5. Bonan, G. B. and Doney, S.: Climate, ecosystems, and planetary futures: The challenge to predict life in Earth system models, Science, 359, eaam8328, https://doi.org/10.1126/science.aam8328, 2018.

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