Biblio
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The coherence of the oceanic heat transport through the Nordic seas: oceanic heat budget and interannual variability. Ocean Science Discussions (OSD) (2020).doi:https://doi.org/10.5194/os-2020-109
Combined influence of oceanic and atmospheric circulations on Greenland sea ice concentration. The Cryosphere 15, (2021).
Comparative oceanographic eddy variability during climate change in the Agulhas current and Somali coastal current large marine ecosystems. Environmental Development 00:100586, (2020).
The Copernicus Marine Environment Monitoring Service Ocean State Report. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 9, (2016).
Copernicus Marine Service Ocean State Report. Journal of Operational Oceanography 11449919159641589185942437116401621, S1 - S142 (2018).
Copernicus Marine Service Ocean State Report, Issue 3. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 12, (2019).
Copernicus Marine Service Ocean State Report, Issue 5. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 14, (2021).
Evaluation of Heat and Salt Transports by Mesoscale Eddies in the Lofoten Basin. Russian Journal of Earth Sciences (RJES) 20, (2020).
Extreme Convective Events in the Lofoten Basin. Pure and Applied Geophysics (PAGEOPH) (2021).doi:10.1007/s00024-021-02749-4
A Framework for the Development, Design and Implementation of a Sustained Arctic Ocean Observing System. Frontiers in Marine Science (2019).
Global sea-level budget and ocean-mass budget, with a focus on advanced data products and uncertainty characterisation. Earth System Science Data 14, (2022).
The impact of atmospheric and oceanic circulations on the Greenland Sea iceconcentration. The Cryosphere Discussions (2020).doi:10.5194/tc-2020-127
Interaction between mesoscale eddies and the gyre circulation in the Lofoten basin. Journal of Geophysical Research (JGR): Oceans 125.e2020JC016102, (2020).
The Lofoten Vortex of the Nordic Seas. Deep Sea Research Part I: Oceanographic Research Papers 96, (2015).
Mesoscale ocean eddy dataset in the Lofoten Basin from Satellite Altimetry. Journal of Geophysical Research - Oceans 121, (2016).
Monitoring the mesoscale eddies of the Lofoten Basin: importance, progress, and challenges. International Journal of Remote Sensing 37, (2016).