HR: 0800h
AN: S21A-0229 INVITED [Abstracts]
TI: The Hayward-Rodgers Creek Fault System: Learning from the Past to Forecast the Future
AU: * Schwartz, D P
EM: dschwartz@usgs.gov
AU: Lienkaemper, J J
EM: jlienk@usgs.gov
AU: Hecker, S
EM: shecker@usgs.gov
AB:
The San Francisco Bay area is located within the Pacific-North American plate boundary. As a result, the region
has the highest density of active faults per square kilometer of any urban center in the US. Between the Farallon
Islands and Livermore, the faults of the San Andreas fault system are slipping at a rate of about 40 mm/yr.
Approximately 25 percent of this rate is accommodated by the Hayward fault and its continuation to the north, the
Rodgers Creek fault.
The Hayward fault extends 88 km from Warm Springs on the south into San Pablo Bay on the north, traversing the
most heavily urbanized part of the Bay Area. The Rodgers Creek fault extends another 63 km, passing through
Santa Rosa and ending south of Healdsburg. Geologic, seismologic, and geodetic studies during the past ten
years have significantly increased our knowledge of this system. In particular, paleoseismic studies of the timing
of past earthquakes have provided critical new information for improving our understanding of how these faults
may work in time and space, and for estimating the probability of future earthquakes. The most spectacular result
is an 11-earthquake record on the southern Hayward fault that extends back to A.D. 170. It suggests an average
time interval between large earthquakes of 170 years for this period, with a shorter interval of 140 years for the five
most recent earthquakes. Paleoseismic investigations have also shown that prior to the most recent large
earthquake on the southern Hayward fault in 1868, large earthquakes occurred on the southern Hayward fault
between 1658 and1786, on the northern Hayward fault between 1640 and 1776, and on the Rodgers Creek fault
between 1690 and 1776. These could have been three separate earthquakes. However, the overlapping
radiocarbon dates for these paleoearthquakes allow the possibility that these faults may have ruptured together
in several different combinations: a combined southern and northern Hayward fault earthquake, a Rodgers
Creek-northern Hayward fault earthquake, or a rupture of all three fault sections. Each of these rupture
combinations would produce a magnitude larger than 1868 (M~6.9).
In 2003, the Working Group on California Earthquake Probabilities released a new earthquake forecast for the
Bay Area. Using the earthquake timing data and alternative fault rupture models, the Working Group estimated a
27 percent likelihood of a M?6.7 earthquake along the Hayward-Rodgers Creek fault zone by the year 2031. This
is this highest probability of any individual fault system in the Bay Area. New paleoseismic data will allow
updating of this forecast.
DE: 0815 Informal education
DE: 0850 Geoscience education research
SC: Seismology [S]
MN: 2007 Fall Meeting