Infrared thermography (IRT), or thermal imaging, is a remote sensing technique capable of mapping the surface temperature pattern evolution, leading to the detection of thermal anomalies within the investigated object. In recent years IRT has undergone a significant increase of applications, thanks to the technological development of portable and cost-effective thermal imaging cameras, as well as the fast measurement and processing times of thermographic data. Nevertheless in the study of slope instability processes, apart from a few interesting experimental studies, IRT is still not widely applied. In this paper we present some applications of IRT, both terrestrial and airborne, in attempt to contribute to a rapid high resolution mapping and to the characterization of slopes affected by instability phenomena. In particular IRT was employed in an integrated approach with other remote sensing techniques, such as terrestrial and aerial laser scanner and photography, in order to detect criticalities in unstable slopes and evaluate the possible hazardous scenarios in emergency management. The potential of IRT for landslide mapping and characterization was explored in different types of critical landscapes (from terrigenous/detrital slopes to rock walls) analyzing the following characteristics: i) pattern of the structural discontinuities and open fractures in rock slopes affected by rock sliding; ii) ephemeral springs and creeks in detrital covers recently affected by debris flow detachment; iii) scarps, moisture and water stagnation areas within large earth flows.

Contribution of infrared thermography to the slope instability characterization / Frodella W.; Morelli S.; Gigli G.; Casagli N.. - STAMPA. - (2014), pp. 97-103. (Intervento presentato al convegno World Landslide Forum 3 tenutosi a Beijing, China nel 2-6 June 2014).

Contribution of infrared thermography to the slope instability characterization

FRODELLA, WILLIAM;MORELLI, STEFANO;GIGLI, GIOVANNI;CASAGLI, NICOLA
2014

Abstract

Infrared thermography (IRT), or thermal imaging, is a remote sensing technique capable of mapping the surface temperature pattern evolution, leading to the detection of thermal anomalies within the investigated object. In recent years IRT has undergone a significant increase of applications, thanks to the technological development of portable and cost-effective thermal imaging cameras, as well as the fast measurement and processing times of thermographic data. Nevertheless in the study of slope instability processes, apart from a few interesting experimental studies, IRT is still not widely applied. In this paper we present some applications of IRT, both terrestrial and airborne, in attempt to contribute to a rapid high resolution mapping and to the characterization of slopes affected by instability phenomena. In particular IRT was employed in an integrated approach with other remote sensing techniques, such as terrestrial and aerial laser scanner and photography, in order to detect criticalities in unstable slopes and evaluate the possible hazardous scenarios in emergency management. The potential of IRT for landslide mapping and characterization was explored in different types of critical landscapes (from terrigenous/detrital slopes to rock walls) analyzing the following characteristics: i) pattern of the structural discontinuities and open fractures in rock slopes affected by rock sliding; ii) ephemeral springs and creeks in detrital covers recently affected by debris flow detachment; iii) scarps, moisture and water stagnation areas within large earth flows.
2014
World landslide forum 3 - Volume 4: Discussion session
World Landslide Forum 3
Beijing, China
2-6 June 2014
Frodella W.; Morelli S.; Gigli G.; Casagli N.
File in questo prodotto:
File Dimensione Formato  
Frodella et al WLF3 2014.pdf

Accesso chiuso

Descrizione: Articolo principale
Tipologia: Pdf editoriale (Version of record)
Licenza: Tutti i diritti riservati
Dimensione 2.53 MB
Formato Adobe PDF
2.53 MB Adobe PDF   Richiedi una copia

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/2158/912132
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
social impact