Ocean mesoscale eddies have been identified as drivers of localized extremely low dissolved oxygen concentration ([O2]) conditions in the subsurface. We employ a global physical-biogeochemical ocean model at eddy-permitting resolution to conduct a census of open-ocean eddies near Eastern Boundary Upwelling Systems adjacent to tropical Oxygen Minimum Zones (OMZs). We track cyclonic and anticyclonic eddies with a surface signature over the period 1992–2018 and isolate their subsurface oxygen characteristics. We identify strongly deoxygenating eddies and quantify their contribution to low [O2] extreme events. Our results show that model simulated low [O2] extreme event frequency is 2–7 times higher in eddies versus non-eddying locations, with ...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
Localized open-ocean low-oxygen "dead zones" in the eastern tropical North Atlantic are recently dis...
The eastern tropical North Atlantic (ETNA) features a mesopelagic oxygen minimum zone (OMZ) at appro...
Localized open-ocean low-oxygen “dead zones” in the eastern tropical North Atlantic are recently dis...
The vertical variability in the oxygen minimum zone (OMZ) in the eastern South Pacific (ESP; 0‐40°S)...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
Localized open-ocean low-oxygen "dead zones" in the eastern tropical North Atlantic are recently dis...
The eastern tropical North Atlantic (ETNA) features a mesopelagic oxygen minimum zone (OMZ) at appro...
Localized open-ocean low-oxygen “dead zones” in the eastern tropical North Atlantic are recently dis...
The vertical variability in the oxygen minimum zone (OMZ) in the eastern South Pacific (ESP; 0‐40°S)...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceThe vertical variability in the oxygen minimum zone (OMZ) in the eastern South...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...
International audienceWe present a quantitative analysis of deoxygenation drivers applied to an Eart...