Active faulting is one of the main factors that induce deep-seated gravitational slope deformations (DGSDs). In this study, we investigate the relationships between the tectonic activity of the NW–SE normal fault system along Mt. Morrone, central Apennines, Italy, and the evolution of the associated sackung-type DGSD. The fault system is considered to be the source of M 6.5–7 earthquakes. Our investigations have revealed that the DGSD began to affect the Mt. Morrone SW slope after the Early Pleistocene. This was due to the progressive slope instability arising from the onset of the younger western fault, with the older eastern fault acting as the preferred sliding zone. Paleoseismological investigations based on the excavation of slope dep...
The study, developed over a wide mountain sector of the central Apennines (Italy), highlights the ro...
Triggering mechanisms and causative processes of Deep Seated Gravitational Slope Deformations (DSGSD...
Triggering mechanisms and causative processes of deep-seated gravitational slope deformations (DSGSD...
Active faulting is one of the main factors that induce deep-seated gravitational slope deformations ...
Active faulting is one of the main factors that induce deep-seated gravitational slope deformations ...
International audienceActive faulting and deep-seated gravitational slope deformation (DGSD) are com...
Eight cases of large-scale gravitational movements (with evidence of rock-slide type displacements) ...
The present work illustrates three cases of deep-seated gravitational slope deformation (DSGSD) in a...
Some features make north-western Tuscany prone to Deep-seated Gravitational Slope Deformations (DGSD...
Paleoseismological techniques have been applied to characterize the kinematic behavior of large-scal...
In the present work we analyse one of the active normal faults affecting the central Apennines, i.e....
Among the causes of deep-seated gravitational slope deformations (DGSD), the most important is relie...
The Upper Scrivia Valley in the Ligurian Apennines is characterized by a large-scale landslides area...
This short note focuses on the review of some selected large slope instabilities, such as massive ro...
The study, developed over a wide mountain sector of the central Apennines (Italy), highlights the ro...
Triggering mechanisms and causative processes of Deep Seated Gravitational Slope Deformations (DSGSD...
Triggering mechanisms and causative processes of deep-seated gravitational slope deformations (DSGSD...
Active faulting is one of the main factors that induce deep-seated gravitational slope deformations ...
Active faulting is one of the main factors that induce deep-seated gravitational slope deformations ...
International audienceActive faulting and deep-seated gravitational slope deformation (DGSD) are com...
Eight cases of large-scale gravitational movements (with evidence of rock-slide type displacements) ...
The present work illustrates three cases of deep-seated gravitational slope deformation (DSGSD) in a...
Some features make north-western Tuscany prone to Deep-seated Gravitational Slope Deformations (DGSD...
Paleoseismological techniques have been applied to characterize the kinematic behavior of large-scal...
In the present work we analyse one of the active normal faults affecting the central Apennines, i.e....
Among the causes of deep-seated gravitational slope deformations (DGSD), the most important is relie...
The Upper Scrivia Valley in the Ligurian Apennines is characterized by a large-scale landslides area...
This short note focuses on the review of some selected large slope instabilities, such as massive ro...
The study, developed over a wide mountain sector of the central Apennines (Italy), highlights the ro...
Triggering mechanisms and causative processes of Deep Seated Gravitational Slope Deformations (DSGSD...
Triggering mechanisms and causative processes of deep-seated gravitational slope deformations (DSGSD...