1. Application of field surveys and multitemporal in-SAR interferometry analysis in the recognition of deep-seated gravitational slope deformation of an urban area of Southern Italy
- Author
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Beniamino Murgante, Mario Bentivenga, Lucia Saganeiti, Salvatore Ivo Giano, Biagio Tucci, Gabriele Nolè, Giuseppe Palladino, and Giacomo Prosser
- Subjects
010504 meteorology & atmospheric sciences ,Field (physics) ,lcsh:Risk in industry. Risk management ,0211 other engineering and technologies ,Deep-Seated Gravitational Slope Deformations ,In-SAR Interferometry analysis ,02 engineering and technology ,Deformation (meteorology) ,Urban area ,01 natural sciences ,lcsh:TD1-1066 ,Gravitation ,lcsh:Environmental technology. Sanitary engineering ,lcsh:Environmental sciences ,021101 geological & geomatics engineering ,0105 earth and related environmental sciences ,General Environmental Science ,lcsh:GE1-350 ,geography ,geography.geographical_feature_category ,Geomorphology ,Geodesy ,lcsh:HD61 ,Interferometry ,Southern Italy ,urban area ,General Earth and Planetary Sciences ,Geology - Abstract
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 Interferometry analysis collected from November 2014 to May 2017 revealed that a ground deformation of +/- 30 mm was occurred, and the process is still active in the whole area.
- Published
- 2019
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