HR: 1340h
AN: T23A-0523 [Abstracts]
TI: Low Viscosity Zone and Mantle Dynamics
AU: * Stein, C
EM: stein@earth.uni-muenster.de
AF: Inst. f. Geophysics, University of Muenster, Corrensstr. 24, Muenster, 48419
Germany
AU: Hansen, U
EM: hansen@earth.uni-muenster.de
AF: Inst. f. Geophysics, University of Muenster, Corrensstr. 24, Muenster, 48419
Germany
AB:
We use a three-dimensional mantle convection model to explore the influence of rheological properties on variations in
viscosity and mantle dynamics. In particular the interaction of a temperature-, pressure- and stress-dependent viscosity has
been studied.
In temperature- and stress-dependent viscosity convection, a stagnant lid mode of convection arises if the viscosity is
strongly dominated by temperature. This is linked to a strong viscosity drop over the top boundary layer with little further
viscosity variations with depth. An almost constant viscosity-depth profile with only a maximum at mid-depth is obtained, if
the system is strongly influenced by the stress dependence. This is coupled to a mobilised surface which takes part in the
convective process. A low viscosity zone (LVZ) at shallow depths and a viscosity peak at mid-depth have been obtained for the
balanced combination of the temperature and stress dependence of the viscosity. The appearance of both zones correlates with
the appearance of plate-like motion. Small rigid surface pieces sink into the interior. But subduction is faster than the
new creation of plates leading only to an occassional occurrence of the features.
Additional pressure dependence of the viscosity helps to slow down subduction speed, so that plates and the LVZ exist over
long times. Further the long-wavelength flow resulting in convection with depth-dependent properties leads to extended plates
and a more global LVZ.
DE: 0545 Modeling (4255)
DE: 8120 Dynamics of lithosphere and mantle: general (1213)
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
DE: 8162 Rheology: mantle (8033)
SC: Tectonophysics [T]
MN: Fall Meeting 2005