HR: 10:35h
AN: T12C-02 [Abstracts]
TI: Continent Ocean Boundaries in the North Atlantic: An Overview
AU: * Gaina, C
EM: Carmen.Gaina@ngu.no
AF: Geological Survey of Norway, Leiv Erikssons vei 39, Trondheim, 7149
Norway
AU: Ball, P J
EM: Philip.Ball@ngu.no
AF: Geological Survey of Norway, Leiv Erikssons vei 39, Trondheim, 7149
Norway
AU: Roest, W R
EM: Walter.Roest@ifremer.fr
AF: Département Géosciences Marines, IFREMER, BP 70, Plouzane, 29280
France
AU: Torsvik, T H
EM: Trond.Torsvik@ngu.no
AF: Geological Survey of Norway, Leiv Erikssons vei 39, Trondheim, 7149
Norway
AB:
The concept of a distinct continent-ocean boundary has been intensely challenged as a wealth of geological and geophysical
data has been collected along passive margins in the last decade. Increasing new evidence points out that a sharp transition
between continental and oceanic crust is rather an exception than a rule, and a continental-oceanic transition zone is
proposed instead. However, the analysis of multidisciplinary data sets does not always lead to the same answer. Different
interpretations of the same datasets led to competing hypotheses for the opening and tectonic evolution of the North Atlantic
and Labrador Sea/Baffin Bay oceanic basins.
The location of the ocean-continent transition zone is of particular relevance to UNCLOS article 76 on the legal continental
shelf because it may be used as evidence to the contrary in positioning the foot of the continental slope, and as such
enlarge a legal shelf claim.
We re-examine the interpretation of continent-ocean boundaries or continent-ocean transition zones using up-to-date
geophysical data and integrate it with a quantitative model of seafloor spreading in the North Atlantic. The opening of
oceanic basins in the Arctic regions is also merged with the new kinematic model and various scenarios are examined with
respect to their implications on the North Atlantic and Arctic continental margins.
This overview of the tectonic evolution of the North Atlantic and Arctic is used to highlight regional problems and suggest
data collection in key areas for better understanding of continental margin formation. It may well be that UNCLOS article 76
provides an opportunity to collect such data.
DE: 1517 Magnetic anomalies: modeling and interpretation
DE: 8105 Continental margins: divergent (1212, 8124)
DE: 8155 Plate motions: general (3040)
SC: Tectonophysics [T]
MN: Fall Meeting 2005