HR: 09:00h
AN: T21D-04 [Abstracts]
TI: Kinematics of Faulting and Structural Evolution of Neogene Supra-detachment Basins on the Menderes Metamorphic Core Complex, Western Anatolia
AU: * Dilek, Y
EM: dileky@muohio.edu
AF: Miami University, Dept. of Geology, Oxford, OH 45056, United States
AU: Oner, Z
EM: onerz@muohio.edu
AF: Miami University, Dept. of Geology, Oxford, OH 45056, United States
AU: Davis, E A
EM: davisea1@muohio.edu
AF: Miami University, Dept. of Geology, Oxford, OH 45056, United States
AB:
The Menderes metamorphic massif (MM) in western Anatolia is a classic core complex with exhumed high-grade
crustal rocks intruded by granodioritic plutons and overlain by syn-extensional sedimentary rocks. Timing and the
mechanism(s) of the initial exhumation of the MM are controversial, and different hypotheses exist in the literature.
Major structural grabens (i.e. Alasehir, Buyuk Menderes) within the MM that are bounded by high-angle and
seismically active faults are late-stage brittle structures, which characterize the block-faulting phase in the
extensional history of the core complex and are filled with Quaternary sediments. On the southern shoulder of the
Alasehir graben high-grade metamorphic rocks of the MM are overlain by the Miocene and younger sedimentary
rocks above a N-dipping detachment surface. The nearly 100-m-thick cataclastic shear zone beneath this surface
contain S-C fabrics, microfaults, Riedel shears, mica-fish structures and shear bands, all consistently indicating
top-to-the North shearing. Granodioritic plutons crosscutting the MM and the detachment surface are exposed
within this cataclastic zone, displaying extensional ductile and brittle structures. The oldest sedimentary rocks
onlapping the cataclastic shear zone of the MM here are the Middle Miocene lacustrine shale and limestone units,
unconformably overlain by the Upper Miocene fluvial and alluvial fan deposits. Extensive development of these
alluvial fan deposits by the Late Miocene indicates the onset of range-front faulting in the MM by this time, causing
a surge of coarse clastic deposition along the northern edge of the core complex. The continued exhumation and
uplift of the MM provided the necessary relief and detrital material for the Plio-Pleistocene fluvial systems in the
Alasehir supradetachment basin (ASDB). A combination of rotational normal faulting and scissor faulting in the
extending ASDB affected the depositional patterns and drainage systems, and produced local unconformities
within the basinal stratigraphy. High-angle, oblique-slip scissor faults crosscutting the MM rocks, the detachment
surface and the basinal strata offset them for more than few 100 meters and the fault blocks locally show different
structural architecture and metamorphic grades, suggesting differential uplift along these scissor faults. This
fault kinematics and the distribution of range-parallel and range-perpendicular faults strongly controlled the
shape and depth of the accommodation space within the ASDB. At a more regional scale scissor faulting across
the MM seems to have controlled the foci of Plio-Pleistocene point-source volcanism in the Aegean extensional
province (e.g. Kula area). There are no major interruptions in the syn-extensional depositional history of the
ASDB, ruling out the pulsed-extension models suggesting a period of contractional deformation in the late
Cenozoic evolution of the MM. The onset of exhumation and extensional tectonics in the MM and western Anatolia
was a result of thermal weakening of the orogenic crust, following a widespread episode of post-collisional
magmatism in the broader Aegean region during the Eocene through Miocene.
DE: 8109 Continental tectonics: extensional (0905)
DE: 8118 Dynamics and mechanics of faulting (8004)
DE: 8169 Sedimentary basin processes
DE: 8175 Tectonics and landscape evolution
SC: Tectonophysics [T]
MN: 2007 Fall Meeting