We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous continental lithosphere, subjected to plume impingement in presence of intraplate stress field. We incorporate partial melting of the extending lithosphere, underlying upper mantle and plume, caused by pressure–temperature variations during the thermo-mechanical evolution of the conjugate passive margin system. Effects of melting included in the model account for thermal effects, causing viscosity reduction due to host rock heating, and mechanical effects, due to cohesion loss. Our study provides better understanding on how presence of melts can influence the evolution of rifting. Here we focus particularly on the role of melting for the tempor...
The South Atlantic conjugate margins are the product of continental rifting and break-up of Pangea, ...
Continental extension may, or may not, be coeval with significant mantle melting, leading to the for...
International audienceWe present results from 2D and 3D thermo-mechanical studies of plume-lithosphe...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
<p>Active or passive continental rifting is accompanied by lithospheric weakening and thinning, asce...
Melt generation in a rifting environment is studied using a dynamic 2-D finite element model. The li...
Abstract. Rifted margins form from extension and breakup of the con-tinental lithosphere. If this ex...
Extension of the continental lithosphere can lead to the formation of rifted margins with contrastin...
Active or passive continental rifting is associated with thinning of the lithosphere, ascent of the ...
Extension of the continental lithosphere can lead to the formation of rifted margins with contrastin...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
International audienceBreaking the lithosphere in extension without exceeding the driving far-field ...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
The South Atlantic conjugate margins are the product of continental rifting and break-up of Pangea, ...
Continental extension may, or may not, be coeval with significant mantle melting, leading to the for...
International audienceWe present results from 2D and 3D thermo-mechanical studies of plume-lithosphe...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
<p>Active or passive continental rifting is accompanied by lithospheric weakening and thinning, asce...
Melt generation in a rifting environment is studied using a dynamic 2-D finite element model. The li...
Abstract. Rifted margins form from extension and breakup of the con-tinental lithosphere. If this ex...
Extension of the continental lithosphere can lead to the formation of rifted margins with contrastin...
Active or passive continental rifting is associated with thinning of the lithosphere, ascent of the ...
Extension of the continental lithosphere can lead to the formation of rifted margins with contrastin...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
International audienceBreaking the lithosphere in extension without exceeding the driving far-field ...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
We present results from 2D and 3D thermo-mechanical studies of plume-lithosphere interactions in a r...
The South Atlantic conjugate margins are the product of continental rifting and break-up of Pangea, ...
Continental extension may, or may not, be coeval with significant mantle melting, leading to the for...
International audienceWe present results from 2D and 3D thermo-mechanical studies of plume-lithosphe...