HR: 0800h
AN: T11D-0414 [Abstracts]
TI: Pull-Apart vs. Subduction Rollback Mechanisms For The Cenozoic Formation Of Bohai Basin, Eastern
China
AU: * Castellanos, H A
EM: hacastellanos@mail.utexas.edu
AF: The University of Texas at Austin, Jackson School of Geosciences, 4412 Spicewood Springs Rd. #600,
Austin, TX 78759
United States
AU: Mann, P
EM: paulm@utig.ig.utexas.edu
AF: The University of Texas at Austin, Jackson School of Geosciences, 4412 Spicewood Springs Rd. #600,
Austin, TX 78759
United States
AB:
The Bohai basin of eastern China covers an area of about 200,000 km2 and forms one of a family of basins that record Cenozoic
extension along the eastern margin of Asia from Viet Nam to northeastern Russia. Two very different deformational mechanisms
have been proposed for the Cenozoic formation of the Bohai basin. The first model proposes a two-stage extension model
consisting of Paleogene rifting in a WNW-ESE direction followed by Neogene thermal subsidence that controlled overlying and
less deformed sag basins above the rifted section (Ye et al., 1985). The mechanism for two-stage rifting is generally
attributed to rollback of the subducted Pacific plate beneath the Asian continent, lithospheric extension of the overriding
continental plate, and thermally-driven, regional subsidence. A second model invokes a more localized Cenozoic pull-apart
basin formed at a right-step in a right-lateral shear system parallel to the Asian continental margin (Allen et al., 1997).
Earthquakes and GPS data indicate that right-lateral strike-slip faulting continues to the present-day in a pattern
consistent with the regional-scale "lazy-Z" map pattern of the Cenozoic Bohai depocenter. Allen et al. (1997) propose the
subsurface of the large pull-apart structure contains diffuse, sub-parallel strike-slip faults offset by smaller-scale,
intrabasinal stepovers.
In order to better distinguish the timing and mechanism for the formation of the Bohai basin, we have interpreted 1400 km of
offshore 2D seismic data, a 3D seismic volume, and integrated lithostratigraphic data from 6 wells that are tied to these
reflection data. Three major units were identified and mapped on a basin-wide scale: basement, a syn-rift unit, and a
post-rift sag unit. Thickening trends and ages indicate the syn-rift phase occurred from late Paleocene to late Oligocene.
Basin opening occurred on a series of half-grabens trending NNE-SSW. Rifting ended during the late Oligocene when a regional
uplift and erosional event affected the basin. The Miocene to recent was marked by the formation of sag basins deformed by
widely-spaced strike-slip faults. These active strike-slip faults are commonly localized on earlier normal faults.
Given these observations a three stage basin history is proposed: 1) Eocene-late Oligocene basin opening across a diffuse set
of half-grabens; the pattern of rifts supports a regional extension possibly related to subduction rollback of the Pacific
plate; 2) a late Oligocene uplift and erosional event of unknown origin; and 3) late Oligocene to recent strike-slip
faulting; the regional-scale "lazy-Z" map pattern of Bohai depocenter indicates the importance of right-stepping pull-apart
control on the younger sag section.
DE: 8105 Continental margins: divergent (1212, 8124)
DE: 8109 Continental tectonics: extensional (0905)
DE: 8155 Plate motions: general (3040)
DE: 8157 Plate motions: past (3040)
DE: 8169 Sedimentary basin processes
SC: Tectonophysics [T]
MN: Fall Meeting 2005