HR: 0800h
AN: GP11D-0862 [Abstracts]
TI: Preliminary Magnetostratigraphic Study of the Split Mountain and Lower Imperial Groups, Split Mountain
Gorge, Western Salton Trough, CA
AU: * Fluette, A L
EM: fluetta@cc.wwu.edu
AF: Western Washington University, Dept. of Geology, 516 High St., Bellingham, WA 98225
United States
AU: Housen, B A
EM: bernieh@cc.wwu.edu
AF: Western Washington University, Dept. of Geology, 516 High St., Bellingham, WA 98225
United States
AU: Dorsey, R J
EM: rdorsey@uoregon.edu
AF: University of Oregon, Dept. of Geological Sciences, Eugene, OR 97403-1272
United States
AB:
We present preliminary results of a magnetostratigraphic study of Miocene-Pliocene sedimentary rocks of the Split Mt. and
lower Imperial Groups exposed in Split Mt. Gorge and eastern Fish Creek-Vallecito basin, western Salton Trough. Precise age
control for the base of this thick section is needed to improve our understanding of the early history of extension-related
subsidence in this region. The geologic setting and stratigraphic framework are known from previous work by Dibblee (1954,
1996), Woodard (1963), Kerr (1982), Winker (1987), Kerr and Kidwell (1991), Winker and Kidwell (1986; 1996), and others. We
have analyzed Upper Miocene to lower Pliocene strata exposed in a conformable section in Split Mt. Gorge, including (in order
from the base; nomenclature of Winker and Kidwell, 1996): (1) Split Mt. Group: Red Rock Fm alluvial sandstone; Elephant
Trees alluvial conglomerate; and lower megabreccia unit; and (2) lower part of Imperial Group, including: Fish Creek Gypsum;
proximal to distal turbidites of the Latrania Fm and Wind Caves Mbr of Deguynos Fm; upper megabreccia unit; marine mudstone
and rhythmites of the Mud Hills Mbr (Deguynos Fm); and the basal part of the Yuha Mbr (Deguynos Fm). Measured thickness from
the base of the Elephant Trees Cgl to the base of the Yuha Mbr is about 1050 m, consistent with previous measurements of
Winker (1987). Paleomagnetic samples were collected at approximately 10 m intervals throughout this section. The upper
portion of our sampled section overlaps with the lower part of the section sampled for magnetostratigraphic study by Opdyke
et al. (1977) and Johnson et al. (1983). They interpreted the base of their section to be about 4.3 Ma, and calculated an
average sedimentation rate of approximately 5.5 mm/yr for the lower part of their section.
Good-quality preliminary results from 15 paleomagnetic sites distributed throughout our sampled section permit preliminary
identification of 6 polarity zones. Based on regional mapping and stratigraphic correlations (Winker and Kidwell, 1996) and
extrapolation of the Johnson et al. (1983) sedimentation rates, we tentatively correlate two normal-polarity intervals in the
lower part of our section to Chrons C3An.1n and C3An.2n of the geomagnetic polarity time scale of Cande and Kent (1995). If
correct, this result would suggest that the lowest reversed-polarity portion of the Red Rock Fm near the base of the section
should be correlated to Chron C3Ar.2r, and would be between 6.57 and 6.94 Ma in age. An alternative, but less likely,
correlation for the reverse-polarity interval at the base of the section would be with Chron C2Br (7.09-7.43 Ma). This has
significant implications for the timing of earliest extension-related basin formation in the western Salton Trough, and
potentially raises new questions about the relationship of the Red Rock and Elephant Trees Formations to the Alverson
Volcanics (22-14 Ma; Ruisaard, 1979; Kerr, 1982). These preliminary results will be tested and refined with a complete
analysis of the remaining samples.
DE: 1714 Geomagnetism and paleomagnetism
DE: 1520 Magnetostratigraphy
DE: 1535 Reversals (process, timescale, magnetostratigraphy)
SC: Geomagnetism and Paleomagnetism [GP]
MN: 2004 AGU Fall Meeting