HR: 11:50h
AN: T32C-06 [Abstracts]
TI: Determination of tectonic shortening rates from progressively deformed flights of terraces above the Chelungpu and Changhua thrust ramps, Taiwan
AU: * Yue, L
EM: lifanyue@gmail.com
AF: Chevron Energy Technology Company, 14141 Southwest Freeway, Sugar Land, TX 77478,
United States
AU: Suppe, J
EM: suppe@princeton.edu
AF: Department Geosciences National Taiwan University, No. 1, Sec. 4, Roosevelt Road,
Taipei, 10617, Taiwan
AB:
The Chelungpu and Changhua thrust ramps in central Taiwan show contrasting hanging-wall structural
geometries that suggest different kinematics, even though they involve the same stratigraphic section and basal
detachment. The Chelungpu thrust shows a classic fault-bend folding geometry, which predicts folding solely by
kink-band migration, whereas the hanging wall of the Changhua thrust demonstrates the characteristic geometry
of a shear fault-bend folding, which predicts a progressive limb rotation with minor kink-band migration. We test
the kinematic predictions of classic and shear fault-bend folding theories by analyzing deformed flights of
terraces and coseismic displacements in the Mw=7.6 Chi-Chi earthquake. The Chelungpu terraces shows
differences in uplift magnitudes across active axial surfaces that closely approximate the assumptions of
classical fault-bend folding, including constant fault-parallel displacement, implying conservation of bed length,
and hanging-wall uplift rates that are proportional to the sine of the fault dip. This provides a basis for precise
determination of total fault slip since the formation of each terrace and combined with terrace dating gives long-
term fault-slip rates for the Chelungpu thrust system. An estimation of the long term fault-slip rate of the
Chelungpu thrust in the north Hsinshe terrace yields 15 mm/yr over the last 55 ka, which is similar to the
combined shortening rate of 16 mm/y on the Chelungpu and Chushiang thrusts in the south estimated by
Simoes et al. in 2006. Evan the coseismic displacements of 3 to 9m in the Chi-Chi earthquake are approximately
fault-parallel but have additional transient components that are averaged out over the timescale of terrace
deformation, which represents 10-100 large earthquakes. In contrast, terrace deformation in the hanging wall of
the Changhua thrust ramp shows progressive limb rotation, as predicted from its shear fault-bend folding
geometry, which combined with terrace dating allows an estimation of the long term fault-slip rate of 21 mm/yr
over the last 31 ka. A combined shortening rate of 37 mm/yr is obtained for this part of the western Taiwan thrust
belt, which is about 45 percent of the total plate-tectonic shortening rate across Taiwan. The Changhua shear
fault-bend fold ramp is in the early stages of its development with only 1.7km total displacement whereas the
Chelungpu classical fault-bend folding ramp in the same stratigraphy has nearly an order of magnitude more
displacement (~14 km). We suggest that shear fault-bend folding may be favored mechanically at low
displacement, whereas classical fault-bend folding would be favored at large displacement.
DE: 8000 STRUCTURAL GEOLOGY
DE: 8005 Folds and folding
DE: 8010 Fractures and faults
DE: 8011 Kinematics of crustal and mantle deformation
DE: 8100 TECTONOPHYSICS
SC: Tectonophysics [T]
MN: 2007 Fall Meeting