HR: 17:15h
AN: S34B-06 [Abstracts]
TI: Observing the Microseism Source Regions from Space
AU: * Simard, M
EM: Marc.Simard@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasaden, CA 91109
AU: Kedar, S
EM: Sharon.Kedar@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasaden, CA 91109
AU: Rodriguez, E
EM: Ernesto.Rodriguez@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasaden, CA 91109
AU: Webb, F H
EM: Frank.H.Webb@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasaden, CA 91109
AB:
Correlations of this ambient seismic signal between seismic stations has recently emerged as a powerful technique for
tomography of the Earth's crust, allowing continuous global monitoring of the crust to seismogenic depths without relying on
the occurrence of earthquakes. The technique has the potential for resolving changes in the crust during periods of little
or no earthquake activity.
Since ambient seismic noise is predominantly generated by ocean wave-wave interactions known to originate in narrowly
defined geographical source areas that vary according to ocean swell state and season, it may be possible to derive physical
constraints of the source characteristics by globallyly observing candidate source regions from space. At present, such
observations have been confined to point measurements such as directional buoys and ocean-bottom seismometers.
Using a technique formulated by Engen and Jonsen [1995], a 'field view' of the generating region can be obtained by
deriving ocean directional spectra from Synthetic Aperature Radar (SAR) images by analysis of cross correlation of
single-look SAR images. In November 2004, the Jet Propulsion Laboratory's (JPL) air-borne SAR instrument, has collected data
off the Alaska coast, while a large storm with wave heights of ~8m was pounding the coast. This was contemporaneous with
the recording of strong microseismic activity by the Canadian National Seismic (CNSN).
The AirSAR collected over a 100km long, 10km wide swath offshore, the region most likely to involve wave-wave interaction
between the incoming swell and coast-reflected waves. JPL has implemented the cross correlation spectral technique, and
applied it to the 2004 data-set. We will present results of the analysis of the SAR data in conjunction with analysis of the
CNSN broadband seismic data.
DE: 6959 Radio oceanography (1222)
DE: 7205 Continental crust (1219)
DE: 7223 Earthquake interaction, forecasting, and prediction (1217, 1242)
DE: 7255 Surface waves and free oscillations
SC: Seismology [S]
MN: Fall Meeting 2005