HR: 0800h
AN: NS11A-0155 [Abstracts]
TI: Analysis of Regionally Detected Icequakes Using the STEEP Network, South-Central AK
AU: * O'Neel, S
EM: soneel@ucsd.ed
AF: Scripps Institution of Oceanography
University of California San Diego, 8602 La Jolla Shores Drive, La Jolla, CA 92037, United States
AU: * O'Neel, S
EM: soneel@ucsd.ed
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: LeBlanc, L
EM: leblanc@gi.alaska.edu
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: Larsen, C
EM: Chris@gi.alaska.edu
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: Truffer, m
EM: truffer@gi.alaska.edu
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: Hansen, R
EM: roger@giseis.alaska.edu
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: Rupert, N
EM: natasha@gi.alaska.edu
AF: Geophysical Institute
University of Alaska Fairbanks, 903 Koyukuk Dr, Fairbanks, AK 99775, United States
AU: Pavlis, G
EM: pavlis@indiana.edu
AF: Indiana University
Department of Geological Sciences, 1001 East 10th Street, Bloomington, IN 47405, United States
AU: None, N
EM: None
AB:
Glaciers produce seismic energy that is detectable from local to teleseismic distances. Glaciolgical processes
including calving, surface crevassing, basal sliding and other, yet unresolved source processes are capable of
producing recordable seismicity. Twenty-two broadband sensors deployed in south-central Alaska during the
SainT Elias TEctonics and Erosion Project (STEEP) provide an excellent means to study glacier-generated
seismicity at regional distances. These instruments surround over 7500 km2 of glacier area including the Bering
Glacier, Bagley Icefield and the tidewater calving glaciers of Icy Bay (Yahtse, Guyot, Tyndal). Our analysis shows
that icequakes nominally occur several times hourly, and can be separated from tectonic seismicity using their
unique spectral characteristics and hypocenter locations. The events typically propagate over 50-75 km
distances, but occasionally are recorded at stations over 150 km away from the energy source. Hypocenters for
more than 1000 events were manually calculated through a 26-day interval during October 2006, and suggest that
a majority of the icequakes are associated with calving at tidewater glaciers that terminate in Icy Bay. Events with
similar time and frequency domain characteristics also occur at locations away from calving fronts, but less often,
and their mechanical origin remains undetermined. Automated detections from a frequency domain event
detector exhibit strong correlation with the handpicked time series, and extend our analysis to all available data
collected during 2006. We present the time distribution of several categories of icequakes and compare these
distributions to environmental variables such as precipitation, temperature and tides to explore potential forcing
for observed variability in icequake occurrence.
DE: 0700 CRYOSPHERE (4540)
DE: 0720 Glaciers
DE: 0776 Glaciology (1621, 1827, 1863)
SC: Near-Surface Geophysics [NS]
MN: 2007 Fall Meeting