Melting-induced stratification above the Earth's inner core due to convective translation
arXiv:1201.1201 · doi:10.1038/nature09257
Abstract
In addition to its global North-South anisotropy(1), there are two other enigmatic seismological observations related to the Earth's inner core: asymmetry between its eastern and western hemispheres(2-6) and the presence of a layer of reduced seismic velocity at the base of the outer core(6-12). This 250-km-thick layer has been interpreted as a stably stratified region of reduced composition in light elements(13). Here we show that this layer can be generated by simultaneous crystallization and melting at the surface of the inner core, and that a translational mode of thermal convection in the inner core can produce enough melting and crystallization on each hemisphere respectively for the dense layer to develop. The dynamical model we propose introduces a clear asymmetry between a melting and a crystallizing hemisphere which forms a basis for also explaining the East-West asymmetry. The present translation rate is found to be typically 100 million years for the inner core to be entirely renewed, which is one to two orders of magnitude faster than the growth rate of the inner core's radius. The resulting strong asymmetry of buoyancy flux caused by light elements is anticipated to have an impact on the dynamics of the outer core and on the geodynamo.
References in corpus (2)
Cited by in corpus (23)
- Rayleigh-Bénard convection with a melting boundary
- How the growth of ice depends on the fluid dynamics underneath
- Thermal convection in Earth's inner core with phase change at its boundary
- Bistability in Rayleigh-Bénard convection with a melting boundary
- Rayleigh-Bénard convection in a creeping solid with melting and freezing at either or both its horizontal boundaries
- Thermal and compositional stratification of the inner core
- Heat Flow and Boundary Heterogeneity in Rotating Convection
- Variability modes in core flows inverted from geomagnetic field models
- Ice front shaping by upward convective current
- Implication of the lopsided growth for the viscosity of Earth's inner core
- A Variable Polytrope Index Applied to Planet and Material Models
- Fe alloy slurry and a compacting cumulate pile across Earth's inner-core boundary
- Shape and size of large-scale vortices: A generic fluid pattern in geophysical fluid dynamics
- Inner core static tilt inferred from intradecadal oscillation in the Earth's rotation
- Seven decades of exploring planetary interiors with rotating convection experiments
- Magnetic Taylor-Proudman constraint explains the flows into the Tangent Cylinder
- Fluid Dynamics of Earth's core: geodynamo, inner core dynamics, core formation
- Seismic hemispheric asymmetry induced by Earth's inner core decentering
- Solid-liquid phase change in planetary cores
- Experimental study of the convection in a thin cylindrical gas layer with imposed bottom and top fluxes and imposed side temperature
- Off-center gravity induces large-scale flow patterns in spherical Rayleigh-Bénard
- Limiting regimes of turbulent horizontal convection. Part I: Intermediate and low Prandtl numbers
- Geophysical implications of a decentered inner core