HR: 17:00h
AN: V14A-05 [Abstracts]
TI: Flow Fields of the 3.5 Ga Komati Formation, South Africa: Geochemical, Stratigraphic, and Temporal relationships between Massive, Vesicular, and Spinifex flows
AU: * Dann, J C
EM: jcdann2@yahoo.com
AF: Jesse Dann, 90 Old Stow Road, Concord, MA 01742, United States
AB:
A challenge of Archean volcanology is to reconstruct submarine flow fields by mapping and analyzing vertically
dipping sequences of lavas. Some flow fields are bound by sediments and/or seafloor alteration that mark clear
gaps in volcanism. Flow fields in the Lower Komati Fm are defined by alternating layers of komatiite (26% MgO)
and komatiitic basalt (15% MgO). Five komatiite flow fields (100-200m thick) repeat the same stratigraphic zoning
of spinifex overlying massive komatiite, and each flow field has a distinct Al2O3/CaO, a ratio unaffected by olivine
fractionation, consistent with the contention that each komatiite flow field represents a distinct batch of mantle
melting.
Although massive and spinifex komatiite form distinct stratigraphic units on a map scale, detailed outcrop
mapping reveals that the change in flow type represents a transition within a single flow field. In one type of
transition, thin massive flows alternate with spinifex flow lobes of a compound flow unit. In another, a vesicular
flow along the boundary links the underlying massive komatiite and overlying spinifex flows in time. The vesicular
flow has alternating spinifex and vesicular layers that form a distinctive crust above a thick massive interior.
Locally, this crust is tilted, intruded by massive komatiite from the interior, and overlain by a thick breccia including
a spinifex flow broken into blocks and rotated like dominoes by the tilting. These outcrop relations indicate that
spinifex flow lobes were starting to flow over the vesicular flow before it had undergone differential inflation, a
temporal link between the lower massive and upper spinifex komatiites consistent with their belonging to the
same flow field.
The transition in flow type may reflect 1) an overlap of proximal and distal facies of komatiite flows as eruption
rates waned and/or 2) thermal maturation prior to eruption. Early, cooler, crystal-rich, massive lava, flowing out as
thick sheet flows, was replaced by hotter, crystal-poor, less degassed lava, flowing out as spinifex flows.
DE: 8400 VOLCANOLOGY
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting