HR: 1340h
AN: T13C-1396 [Abstracts]
TI: Coastal Marine Terraces Define Late Quaternary Fault Activity and Deformation Within Northern East Bay
Hills, San Francisco Bay Region
AU: * Kelson, K I
EM: kelson@lettis.com
AF: William Lettis & Associates, Inc., 1777 Botelho Drive, Suite 262, Walnut Creek, CA 94596
United States
AB:
Detailed mapping of uplifted marine platforms bordering the Carquinez Strait between Benicia and Pinole, California, provides
data on the pattern and rate of late Quaternary deformation across the northern East Bay Hills. Field mapping,
interpretation of early 20th-century topographic data, analysis of aerial photography, and compilation of onshore borehole
data show the presence of remnants of three platforms, with back-edge elevations of about 4 m, 12 m, and 18 m. Based on
U-series dates (Helley et al., 1993) and comparison of platform elevations to published sea-level curves, the 12-m-high and
18-m-high platforms correlate with substage 5e (ca. 120 ka) and stage 9 (ca. 330 ka) sea-level high stands, respectively.
West of the Southhampton fault, longitudinal profiles of platform back-edges suggest that the East Bay Hills between Pinole
and Vallejo have undergone block uplift at a rate of 0.05 +/- 0.01 m/ka without substantial tilting or warping. With
uncertainty of $<$3 m, the 120 ka and 330 ka platforms are at the same elevations across the NW-striking Franklin fault. This
west-vergent reverse fault previously was interpreted to have had late Pleistocene activity and to accommodate crustal
shortening in the East Bay Hills. Our data indicate an absence of vertical displacement across the Franklin fault within at
least the past 120ka and perhaps 330ka. In contrast, the stage 5e and 9 have up-on-the-east vertical displacement and gentle
westward tilting across the N-striking Southhampton fault, with a late Pleistocene vertical slip rate of $>$0.02 m/ka. The
northerly strike and prominent geomorphic expression of this potentially active fault differs from the Franklin fault. Our
mapping of the Southhampton fault suggests that it accommodates dextral shear in the East Bay Hills, and is one of several
left-stepping, en echelon N-striking faults (collectively, the "Contra Costa shear zone", CCSZ) in the East Bay Hills.
Faults within this zone coincide with geomorphic features suggestive of late Quaternary dextral strike slip and appear to
truncate or displace NW-striking reverse faults (e.g., Franklin fault) that do not displace the late Quaternary marine
platform sequence. These data support an interpretation that the CCSZ accommodates regional dextral shear, and possibly
represents the northern extension of the Calaveras fault. Overall, the marine terraces provide excellent strain gauges from
which to evaluate the pattern and rate of late Quaternary deformation throughout the northern East Bay Hills.
DE: 7221 Paleoseismology
DE: 7223 Seismic hazard assessment and prediction
DE: 7230 Seismicity and seismotectonics
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting