HR: 0800h
AN: V11C-0759 [Abstracts]
TI: Edifice Instability and Basal Fault Friction
AU: * Colella, H
EM: harmony.colella@email.ucr.edu
AF: University of California, Riverside, Department of Earth Sciences, Riverside, CA 92521, United States
AU: Dieterich, J H
EM: dieterichj@ucr.edu
AF: University of California, Riverside, Department of Earth Sciences, Riverside, CA 92521, United States
AB:
Edifice instability, which is a common feature of volcanoes, strongly affects eruptive phenomena and evolution of
the volcano edifice. We investigate the interplay of several factors that determine sector failure of axi-symmetric
volcanoes including slope of the volcano, the dip of the basal fault, sector angle, and effect of magmatic intrusion
into flank rift zones. We employ a simple stability model of volcano sector failure in which failure is resisted by
friction on the basal fault. In general, we find that axi-symmetric volcanoes are less stable, or require a higher
coefficient of basal fault friction to resist failure, than Hawaiian-type linear rift volcanoes. Sector failures
commonly define angles in the range 90°-120° - this is consistent with the model results,
which show that larger sector angles to 180° are less favorable for failure. Also, negatively dipping
basal faults are more stable than a horizontal or positively dipping fault. We apply this model to estimate the
effective coefficient of friction of volcanoes built on a weak substrate such as Concepcion and Maderas in
Nicaragua.
DE: 8400 VOLCANOLOGY
DE: 8414 Eruption mechanisms and flow emplacement
DE: 8419 Volcano monitoring (7280)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting