HR: 15:25h
AN: V13E-08 [Abstracts]
TI: An Examination of the Morphology and Petrology of the Ring Creek Lava Flow, South-West British Columbia, Canada
AU: * Bruno, S J
EM: sammyburger69@comcast.net
AF: Western Washington University, Geology Department
M.S. 9080
516 High St., Bellingham, WA 98225, United States
AU: Stelling, P
EM: pete@geol.wwu.edu
AF: Western Washington University, Geology Department
M.S. 9080
516 High St., Bellingham, WA 98225, United States
AU: Hickson, C J
EM: chickson@nrcan.gc.ca
AF: Natural Resources Canada, Geologic Survey of Canada
625 Robson St., Vancouver, B.C V6B 5J3, Canada
AB:
The Ring Creek lava flow is the youngest event in a series of Quaternary volcanic activity in Mount Garibaldi
Volcano of south-west British Columbia, Canada, occurring between 10.7 – 9.3 ka. The lava flow erupted from
parasitic Opal Cone and extends south 6.5 km before making a sharp turn and continues another 11.5 km. At this
turn, the flow width reaches approximately 2.5 km. Examination of outcrops along the southern flow margin yield
thickness estimates in excess of 200 m. The centre of the flow contains lava blocks up to 2 m in diameter, linear
ridges parallel to flow direction ranging from 9 – 11 m in amplitude with a 26m peak to peak distance, and
pressure ridges perpendicular to flow direction ranging from 4 – 13 m height with 21 – 35 m wavelength. Flow
front breccia approximately 200 m in thickness is observed at the toe of the flow. The presence and magnitude of
these features coupled with the mineral assemblage (pl+hbl+bt ± pyx ± mt) are typical of high viscosity
flows. The Ring Creek lava flow is anomalous in that it was able to travel 18 km down-valley. This apparent
contradiction is even more striking when compared to other flows on Mount Garibaldi with similar mineralogy,
which are typically short thick flows or domes. This suggests that a factor other than viscosity has played an
important role in determining the behaviour of the Ring Creek lava flow. Our investigation will address alternative
governing factors of the Ring Creek flow, how they relate to other flows, and the implications of this anomalous
activity for volcanic hazards.
DE: 8429 Lava rheology and morphology
DE: 8488 Volcanic hazards and risks
DE: 9350 North America
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting