HR: 0800h
AN: S41C-1021 [Abstracts]
TI: Convective Patterns under the Indo-Atlantic box
AU: Davaille, A
EM: davaille@ipgp.jussieu.fr
AF: Institut de Physique du Globe de Paris, 4 place Jussieu, Paris, 75005
France
AU: * Stutzmann, E
EM: stutz@ipgp.jussieu.fr
AF: Institut de Physique du Globe de Paris, 4 place Jussieu, Paris, 75005
France
AU: Silveira, G
EM: mdsilveira@fc.ul.pt
AF: Centro de Geofi-sica da Universidade de Lisboa, Edifi-cio C8, Campo Grande, Lisboa, 1749-016
Portugal
AU: Besse, J
EM: besse@ipgp.jussieu.fr
AF: Institut de Physique du Globe de Paris, 4 place Jussieu, Paris, 75005
France
AU: Courtillot, V
EM: courtil@ipgp.jussieu.fr
AF: Institut de Physique du Globe de Paris, 4 place Jussieu, Paris, 75005
France
AB:
Using recent fluid mechanics results as a framework, we reinterpret the
images of the Indo-Atlantic mantle obtained from
global and regional tomography studies together with geochemical, geological
and paleomagnetic observations to unravel the
pattern of convection in the Indo-Atlantic box and its temporal evolution
over the last 260 Myr. Seismic tomography sections
at different depths show that the Earth's mantle seems to be divided in two
boxes by the subducted plates, the Pacific and
the Indo-Atlantic boxes. The latter presently contains a) a broad slow
seismic
anomaly at the CMB which has a similar shape to Pangea 250 Myr ago, and
which divides into several branches higher
in the lower mantle, b) one superswell centered on the western edge of
South Africa, c) at least 6 primary
hotspots with long tracks related to traps, and d) numerous smaller
hotspots.
Moreover, in the last 260 Myr, this mantle box has
undergone 10 traps events, 7 of them related to continental break up.
Several of these past events are spatially correlated
with present-day seismic anomalies and/or upwellings, suggesting episodicity.
Laboratory experiments show that superswells,
long-lived hotspot tracks and traps may represent three evolutionnary stages
of the same phenomenon, i.e. the episodic
destabilization of a hot, chemically heterogeneous thermal boundary layer,
close to the bottom of the mantle. When scaled to
the Earth's mantle, the recurrence time of this phenomenon is on the order
of 100-200 Myr. Also, at any given time, the
Indo-Atlantic box should contain 3 to 9 of these instabilities at different
stages of their development. This is in agreement
with observations. The return flow of the downwelling slabs, although
confined to two main boxes by subduction zone
geometry, may therefore not be passive, but rather take the form of active
thermochemical instabilities.
DE: 7208 Mantle (1212, 1213, 8124)
DE: 8121 Dynamics: convection currents, and mantle plumes
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
DE: 8137 Hotspots, large igneous provinces, and flood basalt volcanism
SC: Seismology [S]
MN: Fall Meeting 2005