130
Views
0
CrossRef citations to date
0
Altmetric
Research Article

The dynamics of the transpolar drift current

ORCID Icon & ORCID Icon
Received 01 Jan 2024, Accepted 25 Apr 2024, Published online: 17 Jun 2024

References

  • Charette, M.A., Kipp, L.E., Jensen, L.T., Dabrowski, J.S., Whitmore, L.M., Fitzsimmons, J.N., Williford, T., Ulfsbo, A., Jones, E., Bundy, R.M., Vivancos, S.M., Pahnke, K., John, S.G., Xiang, Y., Hatta, M., Petrova, M.V., Heimbürger-Boavida, L.-E., Bauch, D., Newton, R., Pasqualini, A., Agather, A.M., Amon, R.M.W., Anderson, R.F., Andersson, P.S., Benner, R., Bowman, K.L., Edwards, R.L., Gdaniec, S., Gerringa, L.J.A., González, A.G., Granskog, M., Haley, B., Hammerschmidt, C.R., Hansell, D.A., Henderson, P.B., Kadko, D.C., Kaiser, K., Laan, P., Lam, P.J., Lamborg, C.H., Levier, M., Li, X., Margolin, A.R., Measures, C., Middag, R., Millero, F.J., Moore, W.S., Paffrath, R., Planquette, H., Rabe, B., Reader, H., Rember, R., Rijkenberg, M.J.A., Barman, M.R., Rutgers van der Loeff, M., Saito, M., Schauer, U., Schlosser, P., Sherrell, R.M., Shiller, A.M., Slagter, H., Sonke, J.E., Stedmon, C., Woosley, R.J., Valk, O., van Ooijen, J. and Zhang, R., The transpolar drift as a source of riverine and shelf-derived trace elements to the central Arctic Ocean. J. Geophys. Res.: Oceans 2020, 125, e2019JC015920.
  • Constantin, A., Comments on: Nonlinear wind-drift ocean currents in arctic regions. Geophys. Astrophys. Fluid Dyn. 2022a, 116, 116–121.
  • Constantin, A., Nonlinear wind-drift ocean currents in arctic regions. Geophys. Astrophys. Fluid Dyn. 2022b, 116, 101–115.
  • Constantin, A. and Johnson, R.S., Ekman-type solutions for shallow-water flows on a rotating sphere: a new perspective on a classical problem. Phys. Fluids 2019, 31, 021401.
  • Constantin, A. and Johnson, R.S., On the modelling of large-scale atmospheric flows. J. Differ. Equations 2021, 285, 751–798.
  • Constantin, A. and Johnson, R.S., On the dynamics of the near-surface currents in the Arctic Ocean. Nonlinear Anal. Real World Appl. 2023, 73, 103894.
  • Constantin, A. and Johnson, R.S., Spherical coordinates for Arctic Ocean flows. In Nonlinear dispersive equations, edited by D. Henry, 2024 (Springer: Cham).
  • Gascard, J.-C. and Metaxian, J.-P., Exploring Arctic transpolar drift during dramatic sea ice retreat. EOS 2008, 89, 21–28.
  • Haller, M., Brümmer, B. and Müller, G., Atmosphere-ice forcing in the transpolar drift stream: results from the DAMOCLES ice-buoy campaigns 2007–2009. The Cryosphere 2014, 8, 275–288.
  • Hibler, W.D., A dynamic-thermodynamic sea-ice model. J. Phys. Oceanogr. 1979, 9, 815–846.
  • Jin, Y., Chen, M., Yan, H., Wang, T. and Yang, J., Sea level variation in the Arctic Ocean since 1979 based on ORAS5 data. Front. Mar. Sci 2023, 10, 1197456.
  • Johnson, R.S., The ocean and the atmosphere: an applied mathematician's view. Comm. Pure Appl. Anal. 2022, 21, 2357–2381.
  • Johnson, R.S., An Introduction to The Mathematical Fluid Dynamics of Oceanic and Atmospheric Flows, 2023 (Berlin: EMS Press).
  • Kwok, R., Arctic sea ice thickness, volume, and multiyear ice coverage: losses and coupled variability (1958–2018). Environ. Res. Lett. 2018, 13, 105005.
  • LeBlond, P.H., Planetary waves in a symmetrical polar basin. Tellus 1964, 16, 503–512.
  • Leppäranta, M., The Drift of Sea Ice, 2011 (Berlin: Springer).
  • Ma, B., Steele, M. and Lee, C.M., Ekman circulation in the Arctic Ocean: beyond the Beaufort Gyre. J. Geophys. Res.: Oceans 2017, 122, 3358–3374.
  • Morison, J., Kwok, R., Dickinson, S., Andersen, R., Peralta-Ferriz, C., Morison, D., Rigor, I., Dewey, S. and Guthrie, J., The cyclonic mode of arctic ocean circulation. J. Phys. Oceanogr. 2021, 51, 1053–1075.
  • Morison, J.H. and McPhee, M., Ice-ocean interaction. In Encyclopedia of Ocean Sciences, edited by J. Steele, pp. 1271–1281, 2001 (Academic Press: New York).
  • Morison, J., Wilkinson, J., Alkire, M., Nilsen, F., Polyakov, I., Smethie, W., Schlosser, P., Vivier, F., Lourenco, A., Provost, C., Pelon, J., Ferriz, C. P., Karcher, M., Rabe, B. and Lee, C., The North Pole region as an indicator of the changing Arctic Ocean. Arctic 2018, 71, 1–15.
  • Nof, D., Modons and monopoles on a Γ-plane. Geophys. Astrophys. Fluid Dyn. 1990, 50, 71–87.
  • Olason, E. and Notz, D., Drivers of variability in Arctic sea-ice drift speed. J. Geophys. Res. Oceans 2014, 119, 5755–5775.
  • Serreze, M.C. and Barry, R.G., The Arctic Climate System, 2014 (Cambridge: Cambridge University Press).
  • Spall, M.A., Dynamics and thermodynamics of the mean transpolar drift and ice thickness in the Arctic Ocean. J. Climate 2019, 32, 8449–8463.
  • Talley, L.D., Pickard, G.L., Emery, W.J. and Swift, J.H., Descriptive Physical Oceanography: An Introduction, 2011 (Amsterdam: Elsevier).
  • Thomas, J.H. and Lux, R.A., Refraction of Rossby waves on a multiple β-plane. Dyn. Atmos. Oceans 1978, 2, 411–426.
  • Timmermans, M.-L. and Marshall, J., Understanding Arctic Ocean circulation: a review of ocean dynamics in a changing climate. J. Geophys. Res.: Oceans 2020, 125, e2018JC014378.
  • Vallis, G.K., Atmospheric and Oceanic Fluid Dynamics, 2005 (Cambridge: Cambridge University Press).
  • Wadhams, P., Ice in The Ocean, 2014 (London: CRC Press).
  • Ward, J.L. and Tandon, N.F., Why is summertime Arctic sea ice drift speed projected to decrease? The Cryosphere 2024, 18, 995–1012.
  • White, A.A., A view of the equations of meteorological dynamics and various approximations. In Large-scale Atmosphere-Ocean Dynamics, edited by J. Norbury and I. Roulstone, pp. 1–100, 2002 (Cambridge: Cambridge University Press).
  • Wilson, C., Aksenov, Y., Rynders, S., Kelly, S.J., Krumpen, T. and Coward, A.C., Significant variability of structure and predictability of Arctic Ocean surface pathways affects basinwide connectivity. Commun. Earth Environ. 2021, 2, 164.
  • Yang, H., Evolution of a Rossby wave packet in barotropic flows with asymmetric basic current, topography and ε-effect. J. Atmos. Sci. 1987, 44, 2267–2276.