Thermal evolution models of Earth's core constrain the power available to the geodynamo process that generates the geomagnetic field, the evolution of the solid inner core and the thermal history of the overlying mantle. Recent upward revision of the thermal conductivity of liquid iron mixtures by a factor of 2-3 has drastically reduced the estimated power available to generate the present-day geomagnetic field. Moreover, this high conductivity increases the amount of heat that is conducted out of the core down the adiabatic gradient, bringing it into line with the highest estimates of present-day core-mantle boundary heat flow. These issues raise problems with the standard scenario of core cooling in which the core has remained completely ...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...
We model the thermal evolution of the core and mantle using a parametrized convection scheme, and ca...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
Earth’s magnetic field has existed for billions of years, sustained by a hydromagnetic dynamo opera...
Recognition that the cooling of the core is accomplished by conduction of heat into a thermal bounda...
The Earth’s magnetic field is generated inside the liquid outer core via a dynamo process, convertin...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We investigate the thermal and chemical buoyancy forces that drive convection in the Earth′s liquid ...
International audienceAlthough it is known that the geodynamo has been operating for at least 3.2 Ga...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The Earth’s inner core grows by the freezing of liquid iron at its surface. The point in history at ...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...
We model the thermal evolution of the core and mantle using a parametrized convection scheme, and ca...
Recent theory and experiment suggest the thermal and electrical conductivities of the Earth’s core a...
Earth’s magnetic field has existed for billions of years, sustained by a hydromagnetic dynamo opera...
Recognition that the cooling of the core is accomplished by conduction of heat into a thermal bounda...
The Earth’s magnetic field is generated inside the liquid outer core via a dynamo process, convertin...
We model the inner core by an alloy of iron and 8 per cent sulphur or silicon and the outer core by ...
We investigate the thermal and chemical buoyancy forces that drive convection in the Earth′s liquid ...
International audienceAlthough it is known that the geodynamo has been operating for at least 3.2 Ga...
The power required to drive the geodynamo places significant constraints on the heat passing across ...
The Earth’s inner core grows by the freezing of liquid iron at its surface. The point in history at ...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
Earth’s global magnetic field arises from vigorous convection within the liquid outer core. Palaeoma...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...
International audienceThe rate at which heat is extracted across the core mantle boundary (CMB) is c...