HR: 09:00h
AN: S11B-03 INVITED [PDF]
TI: Paleoearthquakes on the Denali-Totschunda Fault system: Preliminary Observations of Slip and
Timing
AU: * Schwartz, D P
EM: dschwartz@usgs.gov
AF: USGS, 325 Middlefield Rd., Menlo Park, CA 94025 United States
AU: Denali Fault Earthquake Geology WP, .
EM: dschwartz@usgs.gov
AF: USGS, 325 Middlefield Rd., Menlo Park, CA 94025 United States
AB:
Understanding the behavior of large strike-slip fault systems requires information about the amount of slip and timing of
past earthquakes at different locations along a fault. A historical surface rupture adds a critically important baseline for
calibration. During July 2003 we performed additional mapping of the 2002 Denali-Totschunda surface rupture with the goal of
also measuring and dating slip during previous earthquakes.
We were able to obtain slip values for prior events at a dozen locations along Denali-Totschunda strike-slip rupture. We
focused on the penultimate event, which is easiest to distinguish (slip from individual older events can eventually be
measured). On the Denali fault just west of the intersection with the Susitna Glacier thrust 2002 slip was low, 1.0 m to 1.5
m; cumulative slip from two events was 2.5-3.0, which is essentially double. On the 100-km-long section between Black Rapids
Glacier and Gillett Pass, where 2002 slip averaged 5 m, three measurements indicate penultimate-event slip was about the same
as 2002. The 7-8 m offset section east of Gillett Pass has the clearest paleoevent slip history. We measured three locations
where 2002 slip was 7-8m and cumulative offset on channels was 14.5-16 m. Along this section previous workers noted gullies
with 15 m offsets before the 2002 earthquake, suggesting the past three events here had similar slip. On the Totschunda fault
paleo offsets appear to be similar in amount to 2002. At one locality we measured 2.8 m in 2002 and 5.4 m for two events. A
second site had 1.0-1.4 m of offset in 2002 and 3.1 m for two events. A third location yielded 3.3 m in 2002 and 10.8 m on a
paleochannel, which could represent three events with similar slip. A location in the Denali-Totschunda transition zone had a
5-6 m-high scarp and a well-developed sag pond, indicating that this complex part of the fault system has been active in
previous events. The major observation is that the paleo offset measurements, though presently limited in number, indicate
that penultimate event slip was very similar to the 2002 offset along the length of the ruptured Denali and Totschundafaults,
and may have been similar for at least a third event back.
For most of the it's length the 2002 rupture is expressed as a narrow mole track (typically 1m to 3m wide) but locally it has
produced pull aparts and large fissures. These features contain a variety of organic deposits associated with the ground
surface at the time of the penultimate earthquake(s) on the Denali and Totschunda faults. We sampled five of these, and
recovered peat, pine needles, and trees that were toppled during the penultimate event(s). Including a test pit west of the
Delta River, we have six sample sites that span the 5m and 7-8m rupture segments of the Denali, the Denali-Totschunda
transition zone, and the Totschunda fault. Preliminary radiocarbon dates indicate that the timing of the penultimate event on
the Denali fault is younger than 1400 to 1289 yr BP and may have occurred as recently as 520 to 310 yr BP. The penultimate
event on the Totschunda fault occurred after 1340 to 1130 yr BP and most likely occurred shortly after 660 to 530 years BP.
The Denali-Totschunda fault system is a remarkable laboratory, particularly in terms of preservation of fault geomorphology
and organic material, for studying large strike-slip faults. These initial observations of paleoslip and event dates are the
first steps in unraveling the behavior of this major strike-slip zone.
Denali Fault Earthquake Geology Working Group: T. Dawson, P. Haeussler, J. Lienkaemper, A. Matmon, D. Schwartz, H.Stenner, B.
Sherrod (USGS), F. Cinti, P. Montone (INGV, Rome), G. Carver. G.Plafker (Alyeska)
DE: 7221 Paleoseismology
DE: 7223 Seismic hazard assessment and prediction
SC: Seismology [S]
MN: 2003 Fall Meeting