HR: 1020h
AN: S22A-01 INVITED [Abstracts]
TI: Persistent Behaviors of the Sunda Megathrust in Sumatra: Opportunities to Forecast Destructive Earthquakes
AU: * Sieh, K
EM: sieh@gps.caltech.edu
AF: Tectonics Observatory, Caltech 100-23, Pasadena, CA 91125, United States
AB:
The 2000-km-long Sumatran section of the Sunda megathrust is a treasure trove of information about the long-
term behavior of a great active fault. This is due principally to the presence of an island chain along the Sumatran
outer arc, which provides a platform for both man-made and natural instruments atop the shallow, seismogenic
part of the megathrust. My students, colleagues and I have been using these "instruments" to understand the
megathrust's past and to forecast its future behavior. We recognize three long segments that produce great
earthquakes separated by two short patches of low seismic coupling. Two of the long segments have just
ruptured and the other is nearing the end of its seismic cycle.
The largest seismic rupture along the Sumatran megathrust in the 20th century was a M 7.7 earthquake at the
Equator in 1935 (G&R, 1954). GPS geodesy and coral paleogeodesy, historical seismograms and coral
paleoseismology show that the rupture is embedded in a 120-km section of the megathrust that slips primarily
aseismically. The ~2.3-m rupture of 1935 is the largest seismic event on this Batu Islands patch in at least the
past 250 years, despite its high (45 mm/yr) rate of plate convergence.
Immediately north of the Equator is the 350-km-long section of the megathrust that generated the Mw8.7 Nias-
Simeulue earthquake of 2005. Analysis of records from several continuous GPS stations above the rupture and
about a hundred vertically displaced living corals shows that large seismic slippage was confined to depths
between 14 and 35 km. In contrast, post-seismic deformations recorded at the cGPS stations reflect
concentrations of slip updip and downdip of the seismic rupture. Fossil corals record previous large earthquakes
in 1861 and in about 1800 and 1845. This history, though still incomplete, suggests that a cluster of three
overlapping large seismic ruptures ended the previous earthquake cycle there.
The 1600-km Mw9.15 Aceh-Andaman rupture of 2004 began still farther north, on the north side of the poorly
coupled Central Simeulue patch. Corals above the rupture in Aceh display a paleoseismic history characterized
by very infrequent large uplifts. Prior uplifts occurred about 600 and 1000 years before 2004. The very long
interseismic intervals implied by these dates suggest that the Aceh-Andaman section will lie dormant for several
hundred more years, accumulating the strains necessary to generate another Mw9.2 earthquake and great
tsunami.
The 700-kilometer-long Mentawai section of the Sunda megathrust, south of the Equator, has been dormant
since a great-earthquake couplet in 1797 and 1833. GPS measurements and rapid subsidence of modern corals
show that this section is predominantly locked and storing strain, despite occasional very large aseismic events
on the shallowest part of the megathrust. Coral paleoseismology reveals that great earthquakes or earthquake
clusters have occurred about every two centuries since the mid-14th century. Thus the next great earthquake or
earthquake sequence may be no more than a few decades in the future. Although this forecast is a bit fuzzy, it
has led to the establishment of additional scientific experiments there and to modest preparation in coastal
communities for the next great earthquake and tsunami.
Nonetheless, the poor connections between scientific knowledge of hazards and their actual mitigation in our
world most likely mean that hundreds of thousands of coastal Sumatrans will be killed, injured and left homeless
by the next great Sumatran earthquake and tsunami.
DE: 7215 Earthquake source observations (1240)
DE: 7221 Paleoseismology (8036)
DE: 7223 Earthquake interaction, forecasting, and prediction (1217, 1242)
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
DE: 7240 Subduction zones (1207, 1219, 1240)
SC: Seismology [S]
MN: 2007 Fall Meeting