A quantitative and innovative DGSD (deep gravitational slope deformation) assessment method that used integrated remote sensing was tested in the central Apennine mountain range (Italy). The movement rate was calculated for selected test areas using the differential SAR interferometry small baseline subset (SBAS) technique. The selected test areas were previously identified by interpreting both aerial photos and using 32 ERS radar images taken between 1993 and 2000. More than 15. cm of cumulative surface displacement occurred across the Podalla DGSD along the satellite line of sight (LoS). Moreover, the displacement time series showed non-linear deformation rates, which included periods of accelerated movement correlated with strong rainfal...
The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been...
The PhD research project concerned to the study of Deep-Seated Gravitational Slope Deformations (DSG...
This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation...
A quantitative and innovative DGSD (deep gravitational slope deformation) assessment method that use...
The study is part of a larger project that involves the analysis of recently identified Deep-Seated ...
In recent years, Advanced Differential Interferometric Synthetic-Aperture Radar A-DInSAR technique h...
Deep-seated gravitational slope deformations (DsGSDs) are widespread phenomena in the Alpine environ...
In recent years, the Advanced Differential Interferometric Synthetic-Aperture Radar (A-DInSAR) techn...
Spaceborne radar interferometry is a powerful tool to characterize landslides at local and regional ...
Ground deformation affecting the Umbria region (central Italy) in the 9-year period from 1992 to 200...
Large deep-seated gravitational slope deformation (DsGSD) are slope instability phenomena affecting ...
The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been...
The PhD research project concerned to the study of Deep-Seated Gravitational Slope Deformations (DSG...
This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation...
A quantitative and innovative DGSD (deep gravitational slope deformation) assessment method that use...
The study is part of a larger project that involves the analysis of recently identified Deep-Seated ...
In recent years, Advanced Differential Interferometric Synthetic-Aperture Radar A-DInSAR technique h...
Deep-seated gravitational slope deformations (DsGSDs) are widespread phenomena in the Alpine environ...
In recent years, the Advanced Differential Interferometric Synthetic-Aperture Radar (A-DInSAR) techn...
Spaceborne radar interferometry is a powerful tool to characterize landslides at local and regional ...
Ground deformation affecting the Umbria region (central Italy) in the 9-year period from 1992 to 200...
Large deep-seated gravitational slope deformation (DsGSD) are slope instability phenomena affecting ...
The analysis of 4 year In-SAR Interferometry images and a detailed geomorphological survey have been...
The PhD research project concerned to the study of Deep-Seated Gravitational Slope Deformations (DSG...
This paper presents the results of an investigation on a Deep Seated Gravitational Slope Deformation...