HR: 0800h
AN: T51B-1343 [Abstracts]
TI: Ultra-low Frequency Electromagnetic Monitoring of Earthquakes in the San Francisco Bay Area: Initial
Results of an Earthscope PBO Project
AU: * Bijoor, S
EM: sbijoor@stanford.edu
AF: Department of Electrical Engineering, Stanford University, Stanford, CA 94305-9505
United States
AU: Glen, J
EM: jglen@usgs.gov
AF: US Geological Survey, 345 Middlefield Road, Menlo Park, CA 94025
United States
AU: McPhee, D K
EM: dmcphee@usgs.gov
AF: US Geological Survey, 345 Middlefield Road, Menlo Park, CA 94025
United States
AU: Klemperer, S L
EM: sklemp@stanford.edu
AF: Department of Geophysics, Stanford University, Stanford, CA 94305-2215
United States
AB:
As a necessary part of the PBO (Plate Boundary Observatory) mission we are developing a network of three ultra-low frequency
electromagnetic (ULF-EM) recording sites in northern California to understand earthquake physics and to detect pre-seismic
transients if such exist. Each site will have three orthogonal magnetometers and duplicate sets of orthogonal horizontal
electrode pairs, recording signals from 0.01 to 20 Hz, collocated with an existing broadband seismometer. These three
PBO-sponsored sites will complement two existing magnetometer sites maintained by UC Berkeley at Parkfield and Hollister in
central California, and a growing California network of magnetometers managed by Quakefinder Inc. In 2005 our first station
came online at Jasper Ridge Biological Preserve adjacent to the campus of Stanford University, and our data are freely
available through the Northern California Earthquake Data Center web-site http://quake.geo.berkeley.edu/ncedc/. In 2006 we
intend to complete installations in the North Bay and East Bay, pending continuing discussions with landowners. We present
preliminary data from our Jasper Ridge station (JRSC), aimed at establishing a systematic baseline against which any future
potential seismogenic anomalies may be tested. Ultra-low frequency (0.01-10 Hz) magnetic field anomalies prior to and
following M > 6.5 earthquakes have been reported from a number of different regions of the world. If real, these signals
contain important information about the physics of earthquakes, particularly fluid motion in and around the fault before,
during and after seismic activity. Although we do not (yet) present any claims for signals related to earthquakes, we plan to
continue monitoring for the duration of the project, ideally beyond the next large Bay Area earthquake.
DE: 0694 Instruments and techniques
DE: 7223 Earthquake interaction, forecasting, and prediction (1217, 1242)
SC: Tectonophysics [T]
MN: Fall Meeting 2005