HR: 1340h
AN: T33A-1137 [Abstracts]
TI: Spatial Relationship Between Crustal Structure and Mantle Seismicity in the Vrancea Seismogenic Zone of Romania
AU: * Knapp, C C
EM: camelia@geol.sc.edu
AF: Dept. Geological Sciences, Univ. South Carolina, Columbia, SC 29208, United States
AU: Enciu, D M
AF: ExxonMobil Exploration Co., P.O. Box 4778, Houston, TX 77210, United States
AU: Knapp, J H
EM: knapp@geol.sc.edu
AF: Dept. Geological Sciences, Univ. South Carolina, Columbia, SC 29208, United States
AB:
Active crustal deformation and subsidence in the Southeast Carpathian foreland has previously been attributed to
active foundering of thickened continental lithosphere beneath the Carpathian bend region (Knapp et al, 2005).
The present study involves integration of active and passive-source seismic data in order to place constraints on
the duration, timing, and scale of crustal deformation in the Carpathian foreland, and in particular to assess the
genetic relationship with the Vrancea intermediate-depth seismogenic zone (VSZ). Relocated crustal
earthquakes and focal mechanisms were correlated with four deep industry seismic profiles, the reprocessed
DACIA PLAN deep seismic profile, and the DRACULA (Deep Reflection Acquisition Constraining Unusual
Lithospheric Activity) II and III profiles. Projection of foreland crustal hypocenters onto the deep seismic lines
correlates well with previously identified crustal faults such as the Trotus and Sinaia, as well as the newly
identified Ialomita Fault. Specifically, results of this study (1) image the full crustal and uppermost mantle
structure of the Focsani Basin in the close proximity of the VSZ, (2) show evidence for a sub-horizontal, slightly
east-dipping Moho in the vicinity of the VSZ and thinning of the crust towards the Carpathian orogen, (3) illustrate
the conspicuous absence of west-dipping fabrics or structures in the crust and across the Moho, (4) present
evidence that the Trotus Fault is a crustal-scale active fault with a dextral sense of motion, (5) suggest that the
Paleozoic age Peceneaga-Camena and Capidava-Ovidiu Faults have not been active in post-Paleozoic time, and
(6) show evidence for a new active crustal scale sinistral fault, named the Ialomita fault. Both the seismogenic
Vrancea body and deformation in the Focsani Basin appear to be concentrically bound by the Trotus Fault in the
north and east and the Sinaia-Ialomita Fault in the south, suggesting a coupled deformation between the VSZ
and the foreland deformation, possibly accommodated on these two major fault systems. These results
contradict both the "subduction-in-place" and "slab-
break-off" hypotheses as feasible explanations for VSZ intermediate-depth seismicity, and
lend additional support to a lithospheric delamination model to explain both the origin of the VSZ and the crustal
architecture of the Southeast Carpathian foreland.
DE: 7200 SEISMOLOGY
DE: 7205 Continental crust (1219)
DE: 8110 Continental tectonics: general (0905)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting