The tectonic regime of a planet depends critically on the contributions of basal and internal heating to the planetary mantle, and how these evolve through time. We use viscoplastic mantle convection simulations, with evolving core-mantle boundary temperatures, and radiogenic heat decay, to explore how these factors affect tectonic regime over the lifetime of a planet. The simulations demonstrate (i) hot, mantle conditions, coming out of a magma ocean phase of evolution, can produce a "hot" stagnant-lid regime, whilst a cooler post magma ocean mantle may begin in a plate tectonic regime; (ii) planets may evolve from an initial hot stagnant-lid condition, through an episodic regime lasting 1-3 Gyr, into a plate-tectonic regime, and finally i...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
The ongoing discovery of terrestrial exoplanets accentuates the importance of studying planetary evo...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
AbstractThe tectonic regime of a planet depends critically on the contributions of basal and interna...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
AbstractThe tectonic regime of a planet depends critically on the contributions of basal and interna...
Stagnant lid convection is generally identified as an end-member state of planetary evolution, appli...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
Abstract. Magma oceans, plate tectonics, and stagnant-lid convection have transferred heat out of th...
Although plate tectonics is the present-day mode of geodynamics on Earth, it is not so on Mars and V...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
The ongoing discovery of terrestrial exoplanets accentuates the importance of studying planetary evo...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
AbstractThe tectonic regime of a planet depends critically on the contributions of basal and interna...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
The tectonic regime of a planet depends critically on the contributions of basal and internal heatin...
AbstractThe tectonic regime of a planet depends critically on the contributions of basal and interna...
Stagnant lid convection is generally identified as an end-member state of planetary evolution, appli...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
We use 3D mantle convection and planetary tectonics models to explore the links between tectonic reg...
Abstract. Magma oceans, plate tectonics, and stagnant-lid convection have transferred heat out of th...
Although plate tectonics is the present-day mode of geodynamics on Earth, it is not so on Mars and V...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
Plate tectonics on Earth is driven by the subduction and stirring of dense oceanic lithosphere into ...
The ongoing discovery of terrestrial exoplanets accentuates the importance of studying planetary evo...