We model the evolution of the lithosphere during its shortening and consequent gravitational collapse with special emphasis on the induced variations in the surface stress regime and dynamic topography. In particular, we analyse the conditions leading, immediately after lithospheric failure, to local extension, eventually coeval with compression. Different crustal rheologies and kinematic conditions as well as thermally imposed mechanical rupture are considered. Numerical calculations have been performed by using a 2-D finite element code that couples the thermal and mechanical equations for a Newtonian rheology with a temperature-dependent viscosity. The results show that, after the failure of a gravitationally unstable lithospheric root, ...
The lithospheric memory is key for the interplay of lithospheric stresses and rheological structure ...
[1] Strain-dependent rheologies may play a critical role in the deformation of the lithosphere and p...
A simple mechanical model of planetary lithospheres and asthenospheres is combined with the most rec...
We model the evolution of the lithosphere during its shortening and consequent gravitational collaps...
Continental break-up, which precedes oceanic accretion, probably results from an unstable extension ...
We explore the sensitivity of extensional systems to the thermal structure of the lithosphere using ...
We present a two-dimensional numerical model to study the thermo-mechanical evolution of the lithosp...
We present two-dimensional numerical simulations for shortening a viscoelastoplastic lithosphere to ...
We use numerical modeling to investigate the development of crustal and mantle detachments during li...
rapid uplift of the San Gabriel Mountains since 5 Ma. Tomographic models of this region include a sh...
International audienceIt is currently debated if either thermal erosion of the lithosphere or dynami...
Dynamic topography is the surface expression of asthenospheric convection by means of vertical defle...
International audienceWe used high-resolution (500 × 250 m) two-dimensional lithospheric-scale therm...
Summary. The thermal and mechanical behaviour of the lithosphere during rifting is investigated usin...
The strength of the lithosphere is the integrated force required to cause deformation at a given rat...
The lithospheric memory is key for the interplay of lithospheric stresses and rheological structure ...
[1] Strain-dependent rheologies may play a critical role in the deformation of the lithosphere and p...
A simple mechanical model of planetary lithospheres and asthenospheres is combined with the most rec...
We model the evolution of the lithosphere during its shortening and consequent gravitational collaps...
Continental break-up, which precedes oceanic accretion, probably results from an unstable extension ...
We explore the sensitivity of extensional systems to the thermal structure of the lithosphere using ...
We present a two-dimensional numerical model to study the thermo-mechanical evolution of the lithosp...
We present two-dimensional numerical simulations for shortening a viscoelastoplastic lithosphere to ...
We use numerical modeling to investigate the development of crustal and mantle detachments during li...
rapid uplift of the San Gabriel Mountains since 5 Ma. Tomographic models of this region include a sh...
International audienceIt is currently debated if either thermal erosion of the lithosphere or dynami...
Dynamic topography is the surface expression of asthenospheric convection by means of vertical defle...
International audienceWe used high-resolution (500 × 250 m) two-dimensional lithospheric-scale therm...
Summary. The thermal and mechanical behaviour of the lithosphere during rifting is investigated usin...
The strength of the lithosphere is the integrated force required to cause deformation at a given rat...
The lithospheric memory is key for the interplay of lithospheric stresses and rheological structure ...
[1] Strain-dependent rheologies may play a critical role in the deformation of the lithosphere and p...
A simple mechanical model of planetary lithospheres and asthenospheres is combined with the most rec...