International audiencePost-breakup vertical motions of passive margins are seen here as a result of the post-rift 2-D thermal evolution. A 2-D finite element numerical model is performed to evaluate both the vertical and horizontal conduction that drive the thermal evolution of continental passive margins, from breakup to post-breakup states. Initial temperature configurations corresponding to non-volcanic and volcanic margins are tested, and lead to different thermal evolution of the lithosphere. For both margins, a thermal thickening is observed in the stretched lithosphere, whereas the unstretched lithosphere undergoes first (080 Ma) a thermal thinning and secondly (after 80 Ma) a thermal thickening. In comparison with non-volcanic marg...
Over the past ten years we have numerically modelled the properties of the magmatism generated at fo...
Passive margins are intra-plate lithospheric structures located at the transition between continenta...
International audienceWe used high-resolution (500 × 250 m) two-dimensional lithospheric-scale therm...
International audiencePost-breakup vertical motions of passive margins are seen here as a result of ...
International audiencePassive margins preserve the terrigeneous sediment resulting from its erosion,...
It has been more than 30 years since Sleep (1971) first proposed that passive continental margins fo...
International audienceThe thermal and flexural evolution of passive margins is impacted by the (un)l...
International audienceMany large-scale dynamic processes, from continental rifting to plate subducti...
International audienceTwo major types of passive margins are recognized, i.e. volcanic and non-volca...
International audienceLithospheric extension can generate passive margins that bound oceans worldwid...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
Continental breakup along transform margins produces a sequence of (1) continent-continent, (2) cont...
International audienceWe present a new numerical model to calculate the surface deflection of a two-...
Over the past ten years we have numerically modelled the properties of the magmatism generated at fo...
Passive margins are intra-plate lithospheric structures located at the transition between continenta...
International audienceWe used high-resolution (500 × 250 m) two-dimensional lithospheric-scale therm...
International audiencePost-breakup vertical motions of passive margins are seen here as a result of ...
International audiencePassive margins preserve the terrigeneous sediment resulting from its erosion,...
It has been more than 30 years since Sleep (1971) first proposed that passive continental margins fo...
International audienceThe thermal and flexural evolution of passive margins is impacted by the (un)l...
International audienceMany large-scale dynamic processes, from continental rifting to plate subducti...
International audienceTwo major types of passive margins are recognized, i.e. volcanic and non-volca...
International audienceLithospheric extension can generate passive margins that bound oceans worldwid...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
We present the results of thermo-mechanical modelling of extension and breakup of a heterogeneous co...
Continental breakup along transform margins produces a sequence of (1) continent-continent, (2) cont...
International audienceWe present a new numerical model to calculate the surface deflection of a two-...
Over the past ten years we have numerically modelled the properties of the magmatism generated at fo...
Passive margins are intra-plate lithospheric structures located at the transition between continenta...
International audienceWe used high-resolution (500 × 250 m) two-dimensional lithospheric-scale therm...