The role of Antarctic Bottom Water (AABW) in changing the ocean circulation and controlling climate variability is widely known. However, a comprehensive understanding of the relative contribution and variability of Antarctic regional deep water mass varieties that form AABW is still lacking. Using a high-quality dataset comprising three decades of observational shipboard surveys in the Weddell Sea (1984–2014), we updated the structure, composition and hydrographic properties variability of the Weddell Sea deep-layer, and quantified the contribution of the source waters composing Weddell Sea Bottom Water (WSBW) in its main formation zone. Shifts in WSBW hydrographic properties towards less dense varieties likely equate to less WSBW being pr...
The Antarctic Bottom Water (AABW), which ventilates most of the deepest basins of the world ocean, h...
Cold shelf waters flowing out of the Filchner Depression in the southern Weddell Sea make a signific...
The exchange of water masses between the shallow Weddell Sea continental shelf and the deep ocean is...
Highlights • Shifts in WSBW properties to less dense varieties likely equate to less formation...
The dense water flowing out from the Weddell Sea (WS) significantly contributes to Antarctic Bottom ...
The dense water flowing out from the Weddell Sea significantly contributes to Antarctic Bottom Water...
Data from cruises between 1989 and 2005 with RV POLARSTERN reveal significant temperature and salini...
Regional formation of deep and bottom water masses around the Antarctic continentalshelf is one of t...
International audienceAntarctic Bottom Water (AABW) is pivotal for oceanic heat and carbon sequestra...
The natural variability of the Weddell Sea variety of Antarctic Bottom Water (AABW) is examined in a...
The dense water flowing out from the Weddell Sea (WS), the Weddell Sea Deep Water (WSDW), significan...
We use hydrological and current meter data collected in the Ross Sea, Antarctica between 1995 and 20...
The physical oceanographic environment, water mass characteristics, and distribution in the area adj...
The Antarctic Bottom Water (AABW), which ventilates most of the deepest basins of the world ocean, h...
Cold shelf waters flowing out of the Filchner Depression in the southern Weddell Sea make a signific...
The exchange of water masses between the shallow Weddell Sea continental shelf and the deep ocean is...
Highlights • Shifts in WSBW properties to less dense varieties likely equate to less formation...
The dense water flowing out from the Weddell Sea (WS) significantly contributes to Antarctic Bottom ...
The dense water flowing out from the Weddell Sea significantly contributes to Antarctic Bottom Water...
Data from cruises between 1989 and 2005 with RV POLARSTERN reveal significant temperature and salini...
Regional formation of deep and bottom water masses around the Antarctic continentalshelf is one of t...
International audienceAntarctic Bottom Water (AABW) is pivotal for oceanic heat and carbon sequestra...
The natural variability of the Weddell Sea variety of Antarctic Bottom Water (AABW) is examined in a...
The dense water flowing out from the Weddell Sea (WS), the Weddell Sea Deep Water (WSDW), significan...
We use hydrological and current meter data collected in the Ross Sea, Antarctica between 1995 and 20...
The physical oceanographic environment, water mass characteristics, and distribution in the area adj...
The Antarctic Bottom Water (AABW), which ventilates most of the deepest basins of the world ocean, h...
Cold shelf waters flowing out of the Filchner Depression in the southern Weddell Sea make a signific...
The exchange of water masses between the shallow Weddell Sea continental shelf and the deep ocean is...