Biblio
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Arctic sea ice cover transformations from passive microwave satellite data, 1978 2007. Proceedings of all-Russian annual conference The modern problems of remote sensing of the Earth from space , Vol. 2, No. 5, pp. 228-233, Moscow, 2008 (in Russian) (2008).
Arctic sea ice decline and ice export in the CMIP5 historical simulations (talk). Bjerknes Centre 10-years anniversary conference (2012).
Arctic sea ice decline and ice export in the CMIP5 historical simulations. Ocean Modelling 71, (2013).
Arctic sea ice decline and ice export in the CMIP5 historical simulations (poster). Summer School Monsoon Variability and Climate Teleconnection (2012).
Arctic sea ice transformation revealed from satellite passive microwave data. Problemy Arktiki i Antarktiki (Problems of the Arctic and Antarctic) 78, 38-47 (2008).
The Arctic test case: Use of satellites and models in ice monitoring and forecasting. Operational Ocean Observation from Space. Report from EuroGOOS Conference 5-6 October 2000 at EUMETSAT, Darmstadt, Germany 108-117 (2001).
ArcticROOS Ocean Observing System. Arctic Futures Symposium 2011 81 (2012).at <http://www.polarfoundation.org/uploads/documents_files/afs_2011_report.pdf>
Argo data assimilation into HYCOM with an EnOI method in the Atlantic Ocean. Ocean Science 32, (2015).
Asian droughts in the last millennium: a search for robust impacts of Pacific Ocean surface temperature variabilities. Climate Dynamics Published ahead of print, (2017). Abstract
Assessing the accuracy of satellite derived ocean currents by comparing observed and virtual buoys in the Greater Agulhas Region. Remote Sensing of Environment 216, (2018).
Assessing the robustness of zonal mean climate change detection. Geophysical Research Letters 29, (2002).
An assessment of convective processes relevant to deep water formation in the Boreas Basin. Master Thesis No. 26 (1990).
An assessment of ten ocean reanalyses in the polar regions. Climate Dynamics (2018).doi:10.1007/s00382-018-4242-z
An assessment of the added value from data assimilation on modelled Nordic Seas hydrography and ocean transports. Ocean Modelling 99, (2016).
Assimilation of ground versus lidar observations for PM$_{10}$ forecasting. Atmospheric Chemistry and Physics 13, 269–283 (2013).
Assimilation of lidar signals: Application to aerosol forecasting in the western Mediterranean basin. Atmospheric Chemistry and Physics 14, (2014).
Assimilation of semi-qualitative observations with a stochasticensemble Kalman filter. Quarterly Journal of the Royal Meteorological Society 144, (2018). Abstract
The Atlantic multidecadal oscillation: its manifestations and impacts with special emphasis on the Atlantic region north of 60°N. Journal of Marine Systems 133, (2013).
The Atlantic multidecadal oscillation: its manifestations and impacts with special emphasis on the Atlantic region north of 60°N. Journal of Marine Systems 133, (2014).
Atmospheric response to the autumn sea-ice free Arctic and its detectability. Climate Dynamics (2015).doi:10.1007/s00382-015-2689-8