HR: 0800h
AN: G21C-0668 [Abstracts]
TI: Holocene slip rate for the central Altyn Tagh Fault: Preliminary results from the Tuzidun site based on 14C and 10Be dating of a displaced fluvial terrace riser.
AU: * Gold, R D
EM: gold@geology.ucdavis.edu
AF: Geology Dept., Univ. of California, Davis, Davis, CA 95616, United States
AU: Cowgill, E S
AF: Geology Dept., Univ. of California, Davis, Davis, CA 95616, United States
AU: Arrowsmith, R
AF: School of Earth and Space Exploration, Arizona State Univ., Tempe, AZ 85287, United
States
AU: Muretta, M
AF: School of Earth and Space Exploration, Arizona State Univ., Tempe, AZ 85287, United
States
AU: Gosse, J
AF: Dept. of Earth Sciences, Dalhousie Univ., Halifax, NS B3H 4J1, Canada
AU: Chen, X
AF: Inst. of Geomechanics, CAGS, Beijing, 10081, China
AU: Wang, X
AF: Inst. of Geomechanics, CAGS, Beijing, 10081, China
AB:
The active, left-slip Altyn Tagh Fault (ATF) defines the northern boundary of the Tibetan Plateau and is among the
world's longest intracontinental strike-slip faults. Despite a decade of concentrated work, the Holocene slip rate
for the central ATF is still disputed, with millennial slip rates derived from faulted landforms ranging from 9 to 27
mm/yr. To address this factor-of-three difference, we are investigating a new slip-rate site near Tuzidun (37.73N,
86.72E) along the Cherchen He reach of the fault. The new site is situated where a south-flowing, ephemeral
stream channel crosses the N70E-striking, active trace of the ATF. This channel is flanked by a set of inset fluvial
terraces along its eastern bank. North of the ATF, these terraces include both a younger/lower T1 tread and an
older/higher T2 terrace, which are vertically separated by an intervening T2/T1 riser. South of the fault, the stream
is inset into an alluvial fan, F1. The F1 fan is separated from the higher, T2 fluvial terrace tread to the east, by the
T2/F1 riser. Our neotectonic mapping and survey data indicate that the T2/F1 riser on the south/downstream side
of the ATF and the T2/T1 riser on the north/upstream side have been displaced from one another by left slip along
the ATF. The present separation between these riser segments is ~56 m, though lateral erosion of the riser
may have diminished the true offset. To account for this possibility, we have developed three end-member
reconstructions that yield offsets ranging from 56 to105 m. Ongoing geochronologic and geomorphic analyses
are designed further limit the range of possible displacements. Preliminary age analyses from the Tuzidun site
include 22 new radiocarbon dates from buried organic materials and 7 analyses of 10Be concentration in
quartz extracted from amalgamated samples of terrace conglomerates. The 14C analyses are from
samples collected from within the T2 tread on both sides of the ATF and from loess deposits that cap the
downstream T2/F1 riser face. The 10Be analyses are from samples collected in two depth profiles, north
and south of the ATF, dug into the T2 deposit at the crest of the displaced riser. The calibrated 14C dates
and 10Be surface-exposure ages are compatible, and indicate that the surfaces at the crest and toe of the
riser were abandoned at ~6 ka and ~4.4 ka, respectively. To bracket the millennial slip rate at this site,
we consider three end-member reconstructions. The first is an upper-terrace reconstruction, in which the riser
started recording displacement as soon as the upper-terrace, T2, was abandoned, providing a minimum
constraint on the slip rate of ~9 mm/yr since ~6 ka. An intermediate interpretation is a lower-terrace
reconstruction, in which the riser accumulated no displacement until the lower surface, F1, was abandoned,
yielding a slip rate of ~13 mm/yr since ~4.4 ka. The final reconstruction is one in which erosion of the
upstream T2 surface, prior to T1/F1 deposition, diminished the present-day observed offset. In this case, up to
105 m of displacement has occurred since abandonment of the T2 surface, which permits a slip rate as high as
~18 mm/yr since ~6 ka. The new slip rate of 9-18 mm/yr for the Tuzidun site is consistent with our
preliminary results from three additional slip-rate sites along the central ATF, and taken together, provides an
upper limit of 18 mm/yr for the Holocene slip rate along this reach of the fault.
DE: 1209 Tectonic deformation (6924)
DE: 8107 Continental neotectonics (8002)
DE: 8111 Continental tectonics: strike-slip and transform
SC: Geodesy [G]
MN: 2007 Fall Meeting