HR: 16:00h
AN: T24C-01 INVITED [Abstracts]
TI: Outcrop-scale strain localization and boudinage in Basin and Range and Cycladic core complexes convey
insight into crustal-scale development of detachment tectonics
AU: * Davis, G
EM: gdavis@u.arizona.edu
AF: Department of Geosciences, The University of Arizona, Tucson, AZ 85721
United States
AU: Mehl, C
T24C-01
AF: Laboratoire de Tectoniique, UMR 7072, Universite Pierre et Marie Curie, T 46-00 E2, case 129, 4 place
Jussieu, 75252, Paris, 75252
France
AU: Jolivet, L
T24C-01
AF: Laboratoire de Tectoniique, UMR 7072, Universite Pierre et Marie Curie, T 46-00 E2, case 129, 4 place
Jussieu, 75252, Paris, 75252
France
AU: Lacombe, O
T24C-01
AF: Laboratoire de Tectoniique, UMR 7072, Universite Pierre et Marie Curie, T 46-00 E2, case 129, 4 place
Jussieu, 75252, Paris, 75252
France
AB:
The Miocene detachments of the southern Arizona metamorphic core complexes within the Basin and Range and the Cycladic
Oligo-Miocene detachments contain abundant outcrop-scale structures and fabrics that reveal a progressive ductile through
brittle continuum of deformation. Furthermore, for any subregional system, there is kinematic coordination of direction and
sense of strain and displacement throughout the ductile through brittle continuum. Though attention on fabrics and
structures generally focuses on overprinting of mylonities by cataclasites, it is the outcrop-scale boudinage, both in
abundance and character, which particularly reveals strain localization in general, and the control and emergence of shear
bands, shear zones, and semi-brittle to brittle faults.
Outcrop-scale structures, in any number of tectonic environments, have historically provided insight regarding km-scale
macrostructures, and their origins. This may be the case with boudinage in core complex and detachment settings.
Specifically, it possible to imagine that boudinage tectonics at a crustal scale, produced by collapse and spreading in the
one case (core complexes in the Basin and Range province) and back-arc spreading in the other (the Aegean Cyclades) may have
similarly influenced the development of km-scale shear zones and shear bands that, through time, evolved as ductile-brittle
detachment faults.
One appeal of seeking failure criteria at the plastic/brittle interface is the inherent difficulty of explaining detachment
faults by Anderson mechanics. Undoubtedly there are places where it can be shown that domino tectonics participated in the
formation of metamorphic core complexes and detachment faults. Undoubtedly there are places where (continuous) stress
rotation driven by weak faults created unconventional initial orientations of some normal faults. Yet, overall, it is useful
to consider non-Andersonian mechanics as having spawned the detachments, which, upon formation, can participate in whatever
follows, from rolling hinges to cross-cutting by later structures.
DE: 8000 STRUCTURAL GEOLOGY
DE: 8100 TECTONOPHYSICS
SC: Tectonophysics [T]
MN: Fall Meeting 2005