The need to understand and evaluate the mutual influence of the various involved factors promoted the development of numerical models that are able to analyze the contemporaneous interaction of numerous physical and geological variables, in order to simulate the processes working along ac- tive margins in a way, as more as possible, similar to the natural one. In this context a numerical modeling approach is used to validate the physical and geological reliability of the geodynamic evolution of an inner portion of the Alpine belt: the Austroalpine domain. A previous numerical model (SubMar original code) has been implemented to refine the modeling setting and to extend the comparison with the natural data to the entire Austroalpine Domain i...
Useful geodynamic distinction of continental collision zones can be based on the degree of rheologic...
The pre-Alpine continental crust of the Alps preserves Permian-Triassic magmatic and high-temperatur...
The evolution of an active continental margin is simulated in two dimensions, using a finite differe...
A numerical modeling approach is used to validate the physical and geological reliability of the Alp...
International audienceConvergence zones present very different morphologies depending on the type of...
International audienceMany orogens, such as the Western Alps, are characterised by the collision of ...
International audienceThe geodynamic history of the Western Alpine orogeny comprises periods of dist...
In the Alpine continental crust structural, metamorphic, sedimentary and igneous signatures indicate...
The formation of orogenic belts, like the Western Alps and the Himalayas, is an impressive manifesta...
International audienceIn this study, we use a state-of-the-art 2D numerical algorithm solving the st...
Subduction\u2013collision zones are characterized by the amalgamation and disaggregation of lithosph...
When continental rifting does not develop on a stable continental lithosphere, geodynamic interpreta...
The geodynamics of a convergent ocean/continent margin, evolving from subduction to continental coll...
We perform numerical modeling to investigate the mechanisms leading to the postcollisional tectonic ...
In orogenic belts high pressure\u2013low temperature (HP\u2013LT) metamorphism can widely affect uni...
Useful geodynamic distinction of continental collision zones can be based on the degree of rheologic...
The pre-Alpine continental crust of the Alps preserves Permian-Triassic magmatic and high-temperatur...
The evolution of an active continental margin is simulated in two dimensions, using a finite differe...
A numerical modeling approach is used to validate the physical and geological reliability of the Alp...
International audienceConvergence zones present very different morphologies depending on the type of...
International audienceMany orogens, such as the Western Alps, are characterised by the collision of ...
International audienceThe geodynamic history of the Western Alpine orogeny comprises periods of dist...
In the Alpine continental crust structural, metamorphic, sedimentary and igneous signatures indicate...
The formation of orogenic belts, like the Western Alps and the Himalayas, is an impressive manifesta...
International audienceIn this study, we use a state-of-the-art 2D numerical algorithm solving the st...
Subduction\u2013collision zones are characterized by the amalgamation and disaggregation of lithosph...
When continental rifting does not develop on a stable continental lithosphere, geodynamic interpreta...
The geodynamics of a convergent ocean/continent margin, evolving from subduction to continental coll...
We perform numerical modeling to investigate the mechanisms leading to the postcollisional tectonic ...
In orogenic belts high pressure\u2013low temperature (HP\u2013LT) metamorphism can widely affect uni...
Useful geodynamic distinction of continental collision zones can be based on the degree of rheologic...
The pre-Alpine continental crust of the Alps preserves Permian-Triassic magmatic and high-temperatur...
The evolution of an active continental margin is simulated in two dimensions, using a finite differe...