HR: 10:50h
AN: P31C-03 [PDF]
TI: Topographic and Structural Analysis of Devana Chasma, Venus: A Propagating Rift System
AU: * Kiefer, W S
EM: kiefer@lpi.usra.edu
AF: Lunar and Planetary Institute, 3600 Bay Area Blvd., Houston, TX 77058 United States
AU: Swafford, L C
AF: Dept. of Geology, Michigan State University, East Lansing, MI 48824 United States
AB:
Devana Chasma is a rift system on Venus that formed due
to extensional stresses from the Beta Regio and Phoebe
Regio mantle plumes.
Devana has often been compared to the East African Rift
system on Earth.
Here, we focus on the portion of Devana in the lowland
plains between Beta and Phoebe, 20 North - 4 South,
a distance of 2500 km.
Over this region, Devana is typically 150 to 250 km wide.
Recent gravity modeling (Kiefer and Peterson, Geophys. Res. Lett., Jan.
2003) demonstrated that most of this segment of the rift is
presently underlain by hot, low density mantle material.
The rift has a 600 km lateral offset near 8 North latitude,
where the gravity results show no evidence for hot mantle.
This lead Kiefer and Peterson to propose that Devana is
actually two propagating rifts, one propagating southward
from Beta Regio and the other propagating northward from
Phoebe Regio.
As a test of this hypothesis, we have examined the detailed
structural geology of this section of the rift using topographic
profiles and radar imagery from the Magellan mission.
We constructed a series of topographic transects spaced at approximately
50 km intervals along the rift and measured the average flank height and
the maximum rift depth.
We measured the total vertical offset along faulted surfaces and converted
this to horizontal extension assuming a characteristic normal fault dip
of 60 degrees.
Plots of these quantities as a function of distance along the rift
reveals several characteristic zones.
Average flank height has maximum values near the edges of Beta Regio
(3.5 km) and Phoebe Regio (2.75 km) and decreases rapidly as the rift
crosses the intervening plains.
This is consistent with the rift forming due to thermal anomalies
centered at Beta and Phoebe.
The virtual absence of elevated rift flanks in the offset region near 8 North
is consistent with the absence of hot mantle in this region, as
inferred from the gravity model.
The horizontal extension decreases strongly with increasing distance
from Beta Regio (20 - 10 N), whereas the horizontal displacement shows
little trend with distance from Phoebe Regio (4 S - 7 N).
The horizontal extension has a minimum in the offset region (8 N),
consistent with the observed decrease in fault density in this region.
Both the flank height and horizontal extension results appear to be
consistent with the propagating rift model.
The maximum depth along the rift is typically between -1 and -3 km,
with no strong trend along the rift.
UR: http://www.lpi.usra.edu/science/kiefer/home.html
DE: 5475 Tectonics (8149)
DE: 6295 Venus
DE: 8010 Fractures and faults
DE: 8120 Dynamics of lithosphere and mantle--general
SC: Planetary Sciences [P]
MN: 2003 Fall Meeting