HR: 0800h
AN: U41A-0709 [Abstracts]
TI: The role of convective mixing in degassing the Earth's mantle
AU: * Coltice, N
EM: coltice@univ-lyon1.fr
AF: Universite Lyon 1, Bat Geode
11 Bd du 11 novembre, Villeurbanne, 69100
France
AB:
Because the chemical evolution of the mantle depends on the way rocks are processed
at the surface of the Earth and on the efficiency of convective mixing, the goal of the
present paper is to quantify how mixing and processing depend on convection
parameters (Rayleigh number, heating mode and viscosity stratification).
An extensive set of simple 2D convection simulations with passive tracers
is built to compute bulk (a) Lagrangian strain rates to evaluate mixing efficiency
and (b) processing histories. At high Rayleigh number,
the strain rate is only a function of the velocity of the flow, whatever the
heating mode or viscosity stratification. Though this is not
the case in low Rayleigh number
experiments with basal heating where a transition regime is observed
with inefficient mixing though chaotic.
The simulations show that the processing efficiency
depends a lot on the heating mode : the probability of sampling primordial
rocks is larger with internal heating than with basal heating. Scaling laws
are proposed to parameterize mantle processing histories and
it is predicted that in a 300~K hotter Earth, free convection can account for
the mantle early degassing (more than 90% in less than 100~Myrs).
DE: 8121 Dynamics, convection currents and mantle plumes
DE: 8125 Evolution of the Earth
DE: 3210 Modeling
DE: 1025 Composition of the mantle
DE: 1060 Planetary geochemistry (5405, 5410, 5704, 5709, 6005, 6008)
SC: Union [U]
MN: 2004 AGU Fall Meeting