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Georgiou, S. (author), Ypma, S.L. (author), Brüggemann, N. (author), Sayol España, J.M. (author), van der Boog, C.G. (author), Spence, P. (author), Pietrzak, J.D. (author), Katsman, C.A. (author)
The dense waters formed by wintertime convection in the Labrador Sea play a key role in setting the properties of the deep Atlantic Ocean. To understand how variability in their production might affect the Atlantic Meridional Overturning Circulation (AMOC) variability, it is essential to determine pathways and associated timescales of their...
journal article 2021
document
Georgiou, S. (author), Ypma, S.L. (author), Brüggemann, N. (author), Sayol España, J.M. (author), Pietrzak, J.D. (author), Katsman, C.A. (author)
The water masses exiting the Labrador Sea, and in particular the dense water mass formed by convection (i.e. Labrador Sea Water, LSW), are important components of the Atlantic Meridional Overturning Circulation (AMOC). Several studies have questioned the connection of the LSW production to the AMOC variability. This is partly due to the...
journal article 2020
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van der Boog, C.G. (author), Pietrzak, J.D. (author), Dijkstra, Henk A. (author), Brüggemann, N. (author), Van Westen, René M. (author), James, Rebecca K. (author), Bouma, Tjeerd J. (author), Riva, R.E.M. (author), Slobbe, D.C. (author), Klees, R. (author), Zijlema, Marcel (author), Katsman, C.A. (author)
The mesoscale variability in the Caribbean Sea is dominated by anticyclonic eddies that are formed in the eastern part of the basin. These anticyclones intensify on their path westward while they pass the coastal upwelling region along the Venezuelan and Colombian coast. In this study, we used a regional model to show that this westward...
journal article 2019
document
Georgiou, S. (author), van der Boog, C.G. (author), Brüggemann, N. (author), Ypma, S.L. (author), Pietrzak, J.D. (author), Katsman, C.A. (author)
In this study, an idealized eddy-resolving model is employed to examine the interplay between the downwelling, ocean convection and mesoscale eddies in the Labrador Sea and the spreading of dense water masses. The model output demonstrates a good agreement with observations with regard to the eddy field and convection characteristics. It also...
journal article 2019
document
Brüggemann, N. (author), Katsman, C.A. (author)
In this study, we explore the downward branch of the Atlantic meridional overturning circulation (AMOC) from a perspective in depth space (Eulerian downwelling) as well as from a perspective in density space (diapycnal downwelling). Using an idealized model, we focus on the role of eddying marginal seas, where dense water is formed by deep...
journal article 2019
document
Ypma, S.L. (author), Brüggemann, N. (author), Georgiou, S. (author), Spence, P. (author), Dijkstra, H. A. (author), Pietrzak, J.D. (author), Katsman, C.A. (author)
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...
journal article 2019
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