The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nordic Seas are investigated by tracing the NIIC watermass in two ocean circulation models: the Modular Ocean Model (MOM) and the Parallel Ocean Program (POP). The two simulations use identical atmospheric forcing and have a horizontal resolution of 0.1°. However, the models differ strongly in their representation of the sea-ice cover in the Nordic Seas and, possibly as a consequence, display a different hydrography. Results from observational studies point towards a fast overturning loop north of Iceland that connects the NIIC watermass to the Denmark Strait Overflow Water (DSOW). However, our Lagrangian analysis shows that only 0.2 Sv of the en...
The Denmark Strait overflow water is the largest dense water plume from the Nordic seas to feed the ...
Numerical simulations of the Atlantic and Arctic Oceans using an ocean-sea ice model are analysed wi...
Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite ...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The northward inflow of Atlantic Water through Denmark Strait – the North Icelandic Irminger C...
International audienceThe northward inflow of Atlantic Water through Denmark Strait ? the North Icel...
The upstream sources and pathways of the Denmark Strait Overflow Water and their variability have be...
The Denmark Strait overflow water is the largest dense water plume from the Nordic seas to feed the ...
International audienceThe northward inflow of Atlantic Water through Denmark Strait ? the North Icel...
The Greenland-Scotland Ridge separates the subpolar North Atlantic from the Nordic Seas and constrai...
Numerical simulations of the Atlantic and Arctic Oceans using an ocean-sea ice model are analysed wi...
The Denmark Strait overflow water is the largest dense water plume from the Nordic seas to feed the ...
Numerical simulations of the Atlantic and Arctic Oceans using an ocean-sea ice model are analysed wi...
Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite ...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The pathways and watermass transformation of the North Icelandic Irminger Current (NIIC) in the Nord...
The northward inflow of Atlantic Water through Denmark Strait – the North Icelandic Irminger C...
International audienceThe northward inflow of Atlantic Water through Denmark Strait ? the North Icel...
The upstream sources and pathways of the Denmark Strait Overflow Water and their variability have be...
The Denmark Strait overflow water is the largest dense water plume from the Nordic seas to feed the ...
International audienceThe northward inflow of Atlantic Water through Denmark Strait ? the North Icel...
The Greenland-Scotland Ridge separates the subpolar North Atlantic from the Nordic Seas and constrai...
Numerical simulations of the Atlantic and Arctic Oceans using an ocean-sea ice model are analysed wi...
The Denmark Strait overflow water is the largest dense water plume from the Nordic seas to feed the ...
Numerical simulations of the Atlantic and Arctic Oceans using an ocean-sea ice model are analysed wi...
Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite ...