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Publications

  • Aksenov, Yevgeny et al., (2011): Arctic pathways of Pacific water: AOMIP model experiments, JGR, submitted
  • Dupont, Frederic, (2011): Effect of sea-ice biology in a biophysical model of the Pan-Arctic Ocean and response to Arctic warming, JGR accepted
  • Gao, Guoping et al., (2011): An Unstructured-Grid, Finite-Volume Sea Ice Model(UG-CICE): Development, Validation and Application , JGR, accepted
  • Holloway, Greg, (2011): Oceans and ocean models as seen by current meters, JGR, under revision
  • Houssais, M.-N., and C. Herbaut (2011), Atmospheric forcing on the Canadian Arctic Archipelago freshwater outflow and implications for the Labrador Sea variability, J. Geophys. Res., 116, C00D02, doi:10.1029/2010JC006323.
  • Johnson, Mark A. et al., (2011): Evaluation of Arctic sea ice thickness simulated by AOMIP models, JGR, submitted
  • Michael Karcher, John N. Smith,Frank Kauker, Rüdiger Gerdes and Bill Smethie (2011): Arctic Ocean circulation variability and the dispersion of 129 Iodine, JGR, submitted
  • Kuzmina, Natalia (2011): On the structure and dynamical features of intrusive layering in the Eurasian Basin in the Arctic Ocean, JGR, under revision
  • Kwok, Ron (2011): Observational assessment of Arctic Ocean sea ice motion, export, and thickness in CMIP3 climate simulations, JGR, under revision
  • Moshonkin S.N., G.V. Alekseev, A.V. Gusev, N.A. Diansky, V.B. Zalesny, A.V. Pnyushkov.
    Modeling of climate processes in the Arctic Ocean. "Meteorological and geophysical researches". "Contribution of Russia to IPY 2007/08 ". Paulsen Editions. Moscow – Saint-Petersburg 2011. PP. 130-149.
  • Moshonkin S.N.,  G.V. Alekseev, A.V. Bagno,  A.V. Gusev, N.A. Diansky,  V.B. Zalesny (2011):  Numerical simulation of the  North Atlantic-Arctic Ocean-Bering Sea circulation in the  20th century.  Russian Journal of  Numerical Analysis and  Mathematical Modeling. Netherland. 2011. Vol.26, No.2, pp. 161-178.
  • Moshonkin S.N. , G.V. Alekseev,  N.A. Diansky, A.V. Gusev, V.B. Zalesny. Numerical modeling of the Atlantic Water inflow in Arctic Ocean and Beaufort Gyre fresh water content climatic variability. Izvestiya Atmospheric and Oceanic Physics, 2011, Vol. 47, pp. 1–20. Submitted.
  • Martensson, Sebastian, Simulated long-term variability of ridged sea-ice in the Arctic Oceanusing a coupled multi-category sea-ice ocean model, JGR, under revision
  • Maslowski, Wieslaw, Volume and Freshwater Export Through the Canadian Arctic Archipelago - Part I: Evaluation of Seasonal and Interannual Results from a High-Resolution Model, JGR, submitted
  • Maslowski, Wieslaw, Volume and Freshwater Export Through the Canadian Arctic Archipelago - Part II: Control Mechanisms, JGR, submitted
  • Nguyen, A. T., D. Menemenlis, and R. Kwok ( 2011 ), Arctic ice‐ocean simulation with optimized model parameters: Approach and assessment , J. Geophys. Res. , 116 , C04025, doi:10.1029/2010JC006573
  • Platov G. A. (2011). Numerical Modeling of Deepwater Generation in the Arctic Ocean: Part I. Idealized Tests, Izvestiya, Atmospheric and Oceanic Physics, 2011, Vol. 47, No. 3, pp. 362–376. © Pleiades Publishing, Ltd., 2011. Original Russian Text © G.A. Platov, 2011, published in Izvestiya AN.Fizika Atmosfery i Okeana, 2011, Vol. 47, No. 3, pp. 393–408.
  • Platov G. A., 2011. Numerical Modeling of Deepwater Generation in the Arctic Ocean: Part II. Results of Regional and Global Calculations, ISSN 0001 4338, Izvestiya, Atmospheric and Oceanic Physics, 2011, Vol.47, No. 3, pp. 377–392. © Pleiades Publishing, Ltd., 2011.Original Russian Text © G.A. Platov, 2011, published in Izvestiya AN. Fizika Atmosfery i Okeana, 2011, Vol. 47, No. 3, pp. 409–425.
  • Popova, Ekaterina, What controls primary production in the Arctic Ocean?  Results from an ecosystem model intercomparison, JGR, submitted
  • Proshutinsky et al., Origin of the Arctic Ocean hydrography structure and circulation variability, in preparation
  • Proshutinsky, A., Y. Aksenov, J. Clement Kinney, R. Gerdes, E. Golubeva, D. Holland, G. Holloway, A. Jahn, M. Johnson, E. Popova, M. Steele, and E. Watanabe. 2011. Recent advances in Arctic ocean studies employing models from the Arctic Ocean Model Intercomparison Project. Oceanography 24(3):102–113, http://dx.doi.org/10.5670/oceanog.2011.61.
  • Rampal, Pierre, IPCC climate models do not capture Arctic sea ice drift acceleration: Consequences in terms of projected sea ice thinning and decline, JGR, under revision
  • Rudels, Bert, Volume and freshwater transports through the Canadian Arctic Archipelago - Baffin Bay system, JGR, under revision
  • Sakov, Pavel, TOPAZ4: an ocean-sea ice data assimilation system for the North Atlantic and Arctic, JGR, submitted
  • Schweiger, Axel J, Uncertainty in Modeled Arctic Sea Ice Volume, JGR, under revision
  • Timmermans, M.-L., A. Proshutinsky, R. Krishfield, D. Perovich, J. Richter-Menge, T. Stanton, and J. Toole (2011), Surface freshening in the Arctic Ocean's Eurasian Basin: an apparent consequence of recent change in the wind-driven circulation, J. Geophys. Res., doi:10.1029/2011JC006975, in press.
  • Wang, Zeliang, Effects of parameterized eddy stress on heat and freshwater transports through Fram Strait, JGR, resubmitted after revision
  • Zhang, Xiangdong, Modeling Investigation on Regional Displacement of Arctic Ocean Freshwater Storage, JGR, submitted

Related Files

  • PDF
    Golubeva E.N. and G. A. Platov, (2009): Numerical Modeling of the Arctic Ocean Ice System Response to Variations in the Atmospheric Circulation from 1948 to 2007
  • PDF
    Yakovlev N. G., (2009): Reproduction of the Large-Scale State of Water and Sea Ice in the Arctic Ocean in 1948–2002: Part I. Numerical Model
  • PDF
    Yakovlev N. G., (2009): Reproduction of the Large-Scale State of Water and Sea Ice in the Arctic Ocean in 1948–2002: Part 2. State of sea ice and snow cover
  • PDF
    Aksenov, Yevgeny, Bacon, Sheldon, Coward, Andrew C., Nurser, A.J. George, The North Atlantic inflow to the Arctic Ocean: High-resolution model study
  • PDF
    Proshutinsky, A., et al. (2011): Recent advances in Arctic ocean studies employing models from the Arctic Ocean Model Intercomparison Project.