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Isotopic, chemical and crystallographic characteristics of first-year sea ice from Breid Bay (Princess Ragnhild Coast — Antarctica)
Tison, J.-L.; Haren, J. (1989). Isotopic, chemical and crystallographic characteristics of first-year sea ice from Breid Bay (Princess Ragnhild Coast — Antarctica). Antarctic Science 1(3): 261-268. https://hdl.handle.net/10.1017/S0954102089000386
In: Antarctic Science. Cambridge University Press: Oxford. ISSN 0954-1020; e-ISSN 1365-2079, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Trefwoorden
    Ice > Floating ice > Ice shelves
    Ice > Sea ice
    Physicochemical properties
    Properties > Physicochemical properties
    Properties > Physicochemical properties
    PSW, Antarctica, Queen Maud Land, Princess Ragnhild Coast, Breid Bay [Marine Regions]
    Marien/Kust

Auteurs  Top 
  • Tison, J.-L., meer
  • Haren, J.

Abstract
    A detailed profile of the ice fabric, the deuterium content and the sodium concentration of a 1.64 m long, first-year sea-ice core from Breid Bay, near Syowa Station (Antarctica), is described. The core consists mainly of frazil ice (77%), a common feature observed in recent extended studies of the first-year sea-ice cover in the Weddell Sea area. Neither snow ice, nor platelet ice is present. The remainder of the core consists of congelation ice. The typical substructure of ice plates/brine lamellae occurs only at the bottom of the core. Otherwise fine-grained congelation ice is "sandwiched" between layers of frazil. It lacks the intracrystalline substructure but shows a strong textural elongation and c-axis clustering in the horizontal plane. The evolution processes of the first-year sea-ice cover in Breid Bay are analysed. The dynamical component, demonstrated to play a major role in the eastern Weddell Sea, seems to be of minor importance in this area, where thermodynamics satisfactorily explains the isotopic, chemical and textural characteristics of the core. It is proposed that the topmost part of the core consists of frazil ice produced by wind- and wave-induced turbulence.

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