HR: 09:20h
AN: T51E-06 [Abstracts]
TI: Megathrust Slip and the Care and Feeding of the Subduction Channel Through which the Seismogenic Zone Runs
AU: * Scholl, D W
EM: dscholl@usgs.gov
AF: College of Natural Science and Mathematics, University of Alaska Fairbanks, Fairbanks, AK
99775, United States
AU: Kirby, S H
AF: U.S. Geological Survey, 345 Middlefield Rd, Menlo Park, CA 94025, United States
AU: Keranen, K M
EM: kkathleen@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Rd, Menlo Park, CA 94025, United States
AU: Wells, R E
EM: rwells@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Rd, Menlo Park, CA 94025, United States
AU: Blakely, R J
EM: blakely@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Rd, Menlo Park, CA 94025, United States
AU: Michael, F
EM: mfisher@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Rd, Menlo Park, CA 94025, United States
AU: von Huene, R
EM: rhuene@mindspring.com
AF: University of California Davis, Department of Geology, Davis, CA 95616, United States
AB:
HABITATS OF GREAT OFFSHORE EARTHQUAKES: High-magnitude earthquakes (Mw = or >8.5) and trans-
oceanic tsunamis commonly nucleate along subduction zones (SZ) bordered by laterally continuous, sediment-
flooded trenches. Examples include: south-central Chile (1960 Mw=9.5), eastern Alaska (1964 Mw=9.2), Sumatra
(2004, Mw=9.1), Cascadia (historic 1700 Mw=9.0), Colombia (1906 Mw=8.8), Sumatra (historic 1883, Mw=8.8),
west-central Aleutian (1965 Mw=8.7), central Aleutian (1986, Mw=8.7), Sumatra (2005 Mw=8.6), and Nankai
(historic 1707, Mw=8.5). In thickness, sediment entering these SZ ranges from 2 to 3 km and the column is axially
continuous for more than 800 km. The depositional pile is typically the clastic beds of a trench-axis turbidite
wedge and underlying fan and abyssal plain deposits that accrued seaward of the trench axis. Great rupture
events also occur at subduction zones receiving little sediment, for example the Kamchatka (1952, Mw=9.0) and
the north Chile SZs (historic 1868 Mw=8.9). Both SZs are areas of rapid upper plate thinning, subsidence, and
truncation effected by subduction erosion.
WORKINGS OF THE SUBDUCTION CHANNEL (SC): Beneath the submerged forearc, the SC functions to
transport subducted ocean floor sediment and tectonically eroded forearc debris toward and into the mantle. The
SC is the lowest structural unit containing upper plate crustal material. It hosts the seismogenic zone, which
probably runs along the SC's upper boundary commonly referred to as the interplate decollement. A thick, laterally
continuous SC structurally smoothes or simplifies the surface of the interplate decollement and sets up
conditions for lengthy, high moment-release ruptures. Maximum slip is commonly concentrated beneath the
thinned crust underlying forearc basins. These structures, in positive feed-back, are likely deepened co-
seismically by high-slip-rate enhanced basal subduction erosion. The detached material lowers the effective
stress on the decollement and further evens this interface. The channel also works tectonically to underplate the
base of the inner margin and induce uplift and co-seismic activation of high-angle reverse faults.
CONSEQUENCES OF WHAT IS FED SUBDUCTION ZONES: Ridges and high relief entering the SZ can act to
arrest lateral rupturing. Supplying sedimentary and erosional debris to the subduction channel appears to act
differently and favors the continuation of rupture, rapid slip beneath crustally thinned areas that can be translated
upward at forearc splay faults to generate trans-oceanic tsunamis, and nearshore reverse-fault can spawn near-
field tsunamis. The potential for great earthquake nucleation along thickly sediment SZs must be set high.
Similarly, seismogenic risk for highly erosional SZ little perturbed by subducting relief must also be set high.
Margins undergoing rapid tectonic erosion produce regional tsunamis but perhaps not trans-oceanic waves of
great destructiveness.
DE: 1031 Subduction zone processes (3060, 3613, 8170, 8413)
DE: 3060 Subduction zone processes (1031, 3613, 8170, 8413)
DE: 3613 Subduction zone processes (1031, 3060, 8170, 8413)
DE: 8104 Continental margins: convergent
DE: 8170 Subduction zone processes (1031, 3060, 3613, 8413)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting