HR: 0800h
AN: T41E-1360 [Abstracts]
TI: A New Look At The 1996 Gorda Ridge Eruption
AU: * Clague, D A
EM: clague@mbari.org
AF: Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039-9644
United States
AU: Chadwick, W W
EM: bill.chadwick@noaa.gov
AF: Oregon State University/NOAA, Hatfield Marine Science Center, Newport, OR 97365-5258
United States
AU: Davis, A S
EM: davisa@mbari.org
AF: Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039-9644
United States
AU: Head, J W
EM: james_Head_III@Brown.Edu
AF: Dept. of Geological Sciences, Brown University, Providence, RI 02912
United States
AU: Mastin, L G
EM: lgmastin@usgs.gov
AF: David A. Johnson Cascade Volcano Observatory, U.S. Geological Survey, Vancouver, WA 98683
United States
AU: Paduan, J B
EM: paje@mbari.org
AF: Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039-9644
United States
AU: Ross, S L
EM: sross@usgs.gov
AF: U.S. Geological Survey, 345 Middlefield Road, Menlo Park, CA 94025
United States
AU: Wilson, L
EM: l.wilson@lancaster.ac.uk
AF: Environmental Science Dept., Lancaster University, Lancaster, LA1 4YQ
United Kingdom
AU: Zierenberg, R A
EM: z@geology.ucdavis.edu
AF: Dept. of Geological Sciences, University of California-Davis, Davis, CA 95616-8605
United States
AB:
Lava flows of known age are rare on the mid-ocean ridge system. The only such flow on the Gorda Ridge erupted during an
intense seismic swarm in Feb.-March 1996. We revisited the 1996 eruption site on the northern Gorda Ridge with the ROV
Tiburon in August 2005. The lava flow, although less than 10 years old, has accumulated noticeable sediment, the glossy sheen
on the pillow flow is now a dull finish, and sessile fauna have begun to colonize it. With more extensive surveys, we found
that the flow is significantly smaller than originally proposed, consisting of a northern mound extending from 42.688 °N
to 42.675 °N and a small southern mound centered at 42.67 °N, separated by about 1 km of older flows. A Tiburon
dive in 2002 also shows that the hypothesized flow 5-7 km farther south is all older, so the 1996 eruption was limited to the
two small pillow mounds. The northern mound is unusual in that it consists of a narrow 80-90m tall pillow ridge surrounded
by talus at the base. In places the tall narrow pillow ridge has vertical to overhanging slopes consisting of elongate and
truncated pillow flows. On the northern edge of the flow, the 1996 talus directly overlies older flows. The talus and
surrounding older flows are peppered with angular glassy debris spalled from the pillow fragments as they tumbled down the
steep slopes. The top of the pillow mound consists of lobate to rounded pillow forms. The eruption produced little
pyroclastic debris, as limu o Pele (bubble-wall fragments) is rare in all sediment and suction samples from on and adjacent
to the 1996 flow. Some of the talus at the base of the 1996 pillow ridge is elongate 'lavacicles' that formed when elongate
pillows disgorged over vertical or overhanging slopes, forming cylindrical stalactite-like lava forms up to 2-3 m long, with
glassy rinds that are wrinkled on a millimeter scale, in contrast to smooth glassy rinds on pillow toes. A tall narrow pillow
mound with abundant talus at its base would usually be interpreted as tectonically modified by subsequent faulting, and
would therefore be considered an older flow. In this case, however, the talus formed during the eruption and is therefore a
constructional landform. Exploration of the flows adjacent to the 1996 flow found other similar structures that are also
interpreted to be relatively young based on their thin sediment cover and poorly developed faunal communities. Such narrow,
tall pillow mounds most likely form during very low-flux extrusion of lava and may be a common constructional landform on
slow- to moderate-spreading ridges, such as the northern Gorda Ridge.
DE: 8414 Eruption mechanisms and flow emplacement
DE: 8416 Mid-oceanic ridge processes (1032, 3614)
DE: 8425 Effusive volcanism
DE: 8427 Subaqueous volcanism
DE: 8429 Lava rheology and morphology
SC: Tectonophysics [T]
MN: Fall Meeting 2005