The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been carried out to detect a large Deep-Seated Gravitational Slopes (DSGSD) affecting the urban area of the Episcopia village, in Southern Italy. The DSGSD largely develops within phyllites of the Liguride Units and, in the upper slope, within Pleistocene sand and conglomerate deposits of the Sant’Arcangelo Basin. Field survey has shown trenches at the top and an evident bulge at the base of the DSGSD, corresponding to the Talweg of the Sinni River. Geological and geomorphological field surveys allowed us to hypothesize a listric geometry of the DSGSD subsurface plane reaching about 700 m of depth. Furthermore, the multi-temporal In-SAR Interfero...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
SAR interferometry has proven capable of measuring surface displacements in various situations inclu...
The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been...
A limited sector of the left side Sinni River, including Episcopia village, has been investigated ma...
A limited sector of the left side Sinni River, including Episcopia village, has been investigated ma...
This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation...
We investigated the northern-central portion of Sicily region (southern Italy) using aerial photogra...
The PhD research project concerned to the study of Deep-Seated Gravitational Slope Deformations (DSG...
The study is part of a larger project that involves the analysis of recently identified Deep-Seated ...
This paper focuses on Deep-Seated Gravitational Slope Deformations (DSGSDs) identified in the Molise...
A quantitative and innovative DGSD (deep gravitational slope deformation) assessment method that use...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
SAR interferometry has proven capable of measuring surface displacements in various situations inclu...
The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been...
A limited sector of the left side Sinni River, including Episcopia village, has been investigated ma...
A limited sector of the left side Sinni River, including Episcopia village, has been investigated ma...
This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation...
We investigated the northern-central portion of Sicily region (southern Italy) using aerial photogra...
The PhD research project concerned to the study of Deep-Seated Gravitational Slope Deformations (DSG...
The study is part of a larger project that involves the analysis of recently identified Deep-Seated ...
This paper focuses on Deep-Seated Gravitational Slope Deformations (DSGSDs) identified in the Molise...
A quantitative and innovative DGSD (deep gravitational slope deformation) assessment method that use...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
On 4 November 2010, a deep-seated gravitational slope deformation (North Italy) reactivated with sud...
SAR interferometry has proven capable of measuring surface displacements in various situations inclu...