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Observing the full ocean volume using Deep Argo floats

Nathalie V. Zilberman; Virginie Thierry; Brian King; Matthew Alford; Xavier André; Kevin Balem; Nathan Briggs; Zhaohui Chen; Cécile Cabanes; Laurent Coppola; Giorgio Dall’Olmo; Damien Desbruyères; Denise Fernandez; Annie Foppert; Wilford Gardner; Florent Gasparin; Bryan Hally; Shigeki Hosoda; Gregory C. Johnson; Taiyo Kobayashi; Arnaud Le Boyer; William Llovel; Peter Oke; Sarah Purkey; Elisabeth Remy; Dean Roemmich; Megan Scanderbeg; Philip Sutton; Kamila Walicka; Luke Wallace; Esmee M. van Wijk
Frontiers in Marine Science · Vol. 10 · 2023

Abstract

The ocean is the main heat reservoir in Earth’s climate system, absorbing most of the top-of-the-atmosphere excess radiation. As the climate warms, anomalously warm and fresh ocean waters in the densest layers formed near Antarctica spread northward through the abyssal ocean, while successions of warming and cooling events are seen in the deep-ocean layers formed near Greenland. The abyssal warming and freshening expands the ocean volume and raises sea level. While temperature and salinity characteristics and large-scale circulation of upper 2000 m ocean waters are well monitored, the present ocean observing network is limited by sparse sampling of the deep ocean below 2000 m. Recently developed autonomous robotic platforms, Deep Argo floats, collect profiles from the surface to the seafloor. These instruments supplement satellite, Core Argo float, and ship-based observations to measure heat and freshwater content in the full ocean volume and close the sea level budget. Here, the value of Deep Argo and planned strategy to implement the global array are described. Additional objectives of Deep Argo may include dissolved oxygen measurements, and testing of ocean mixing and optical scattering sensors. The development of an emerging ocean bathymetry dataset using Deep Argo measurements is also described.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2023-11-29
Publication Year2023
Volume10
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2023.1287867
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.