vix.ing · top · new · best · stats · spec

Seasonal Overturning of the Labrador Sea as Observed by Argo Floats

2017/08/11 by James Holte, Fiamma Straneo · 6 citations
Earth and Planetary Sciences · #Arctic and Antarctic ice dynamics #Argo #Climatology #Geology #Geology and Paleoclimatology Research #Geostrophic wind #Hydrography #Oceanographic and Atmospheric Processes #Oceanography #Thermohaline circulation

paper · doi:10.1175/jpo-d-17-0051.1

openalex publication_date 2017/08/11 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Abstract Argo floats are used to investigate Labrador Sea overturning and its variability on seasonal time scales. This is the first application of Argo floats to estimate overturning in a deep-water formation region in the North Atlantic. Unlike hydrographic measurements, which are typically confined to the summer season, floats offer the advantage of collecting data in all seasons. Seasonal composite potential density and absolute geostrophic velocity sections across the mouth of the Labrador Sea assembled from float profiles and trajectories at 1000 m are used to calculate the horizontal and overturning circulations. The overturning exhibits a pronounced seasonal cycle; in depth space the overturning doubles throughout the course of the year, and in density space it triples. The largest overturning [1.2 Sv (1 Sv ≡ 10 6 m 3 s −1 ) in depth space and 3.9 Sv in density space] occurs in spring and corresponds to the outflow of recently formed Labrador Sea Water. The overturning decreases through summer and reaches a minimum in winter (0.6 Sv in depth space and 1.2 Sv in density space). The robustness of the Argo seasonal overturning is supported by a comparison to an overturning estimate based on hydrographic data from the AR7W line.

Cited by

Related