The residual kinematics of relict landslides involving built areas can represent a severe source of risk. Such slope movements can be monitored through ground-based geotechnical and remote sensing techniques, like interferometric synthetic aperture radar (InSAR). In this study, to investigate the residual slow movements of a relict landslide affecting the Mendatica village (Liguria, NW Italy), a coupled analysis of multi-temporal displacement monitoring datasets from slope inclinometers and InSAR (ERS, RADARSAT, ENVISAT, COSMO-SkyMed and Sentinel-1) was performed. Owing to the favorable satellite acquisition geometry and a rather continuous temporal efficiency of in situ geotechnical equipment, the study emphasized the complementariness between the two techniques. The joint analysis allowed reconstructing the patterns of movement over almost 30 years. Furthermore, by exploiting the spatial correspondence and long temporal overlap of InSAR and geotechnical measurements, together with geomorphological evidence, the displacement components were combined to reconstruct the subsurface geometric structure and the kinematic model of the landslide. The results revealed that the residual landslide activity consists of composite movements involving major translational movements coupled with weak rotational mechanisms, mainly driven by erosion at the landslide toe. The study outcomes represent useful knowledge for the zonation of movement intensity for medium-to-long term landslide risk management strategies.

Joint use of multi-temporal satellite interferometric and geotechnical data for monitoring and investigating the kinematics of an urbanized relict landslide / Barbadori F., Dahanayaka S., Del Soldato M., Arrighetti F., Macciò T., Macciò R., Cevasco A., Pepe G.. - In: EUROPEAN JOURNAL OF REMOTE SENSING. - ISSN 2279-7254. - ELETTRONICO. - 59:(2026), pp. 2620877.1-2620877.25. [10.1080/22797254.2026.2620877]

Joint use of multi-temporal satellite interferometric and geotechnical data for monitoring and investigating the kinematics of an urbanized relict landslide

Barbadori F.;Dahanayaka S.;Del Soldato M.;Arrighetti F.;
2026

Abstract

The residual kinematics of relict landslides involving built areas can represent a severe source of risk. Such slope movements can be monitored through ground-based geotechnical and remote sensing techniques, like interferometric synthetic aperture radar (InSAR). In this study, to investigate the residual slow movements of a relict landslide affecting the Mendatica village (Liguria, NW Italy), a coupled analysis of multi-temporal displacement monitoring datasets from slope inclinometers and InSAR (ERS, RADARSAT, ENVISAT, COSMO-SkyMed and Sentinel-1) was performed. Owing to the favorable satellite acquisition geometry and a rather continuous temporal efficiency of in situ geotechnical equipment, the study emphasized the complementariness between the two techniques. The joint analysis allowed reconstructing the patterns of movement over almost 30 years. Furthermore, by exploiting the spatial correspondence and long temporal overlap of InSAR and geotechnical measurements, together with geomorphological evidence, the displacement components were combined to reconstruct the subsurface geometric structure and the kinematic model of the landslide. The results revealed that the residual landslide activity consists of composite movements involving major translational movements coupled with weak rotational mechanisms, mainly driven by erosion at the landslide toe. The study outcomes represent useful knowledge for the zonation of movement intensity for medium-to-long term landslide risk management strategies.
2026
59
1
25
Barbadori F.; Dahanayaka S.; Del Soldato M.; Arrighetti F.; Macciò T.; Macciò R.; Cevasco A.; Pepe G.
File in questo prodotto:
File Dimensione Formato  
Barbadori et al EJRS 2026.pdf

accesso aperto

Tipologia: Pdf editoriale (Version of record)
Licenza: Open Access
Dimensione 9.47 MB
Formato Adobe PDF
9.47 MB Adobe PDF

I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1481354
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 0
  • ???jsp.display-item.citation.isi??? ND
social impact