highlight the interest of combining different techniques obtained from numerous developments in remote-sensing, near-surface geophysics, field instrumentation and data processing. In a number of case studies, they show significant advances in characterizing the landslide morphology and internal structure

Innovative Techniques for the Characterization of the Morphology, Geometry and Hydrological Features of Slow-Moving Landslides / Ulrich, Kniess; Julien, Travelletti; Alexander, Daehne; Dominika, Krzeminska; Gregory, Bievre; Denis, Jongmans; Corsini, Alessandro; Thom, Bogaard; Jean Philippe, Malet. - STAMPA. - 34:(2014), pp. 57-82. [10.1007/978-94-007-6769-0_3]

Innovative Techniques for the Characterization of the Morphology, Geometry and Hydrological Features of Slow-Moving Landslides

CORSINI, Alessandro;
2014

Abstract

highlight the interest of combining different techniques obtained from numerous developments in remote-sensing, near-surface geophysics, field instrumentation and data processing. In a number of case studies, they show significant advances in characterizing the landslide morphology and internal structure
2014
MOUNTAIN RISKS: FROM PREDICTION TO MANAGEMENT AND GOVERNANCE. ADVANCES IN NATURAL AND TECHNOLOGICAL HAZARDS RESEARCH
T. van Asch, J. Corominas, S. Greiving, J-P Malet, S. Sterlacchini
9789400767683
Springer Dordrecht Heidelberg New York London
GERMANIA
Innovative Techniques for the Characterization of the Morphology, Geometry and Hydrological Features of Slow-Moving Landslides / Ulrich, Kniess; Julien, Travelletti; Alexander, Daehne; Dominika, Krzeminska; Gregory, Bievre; Denis, Jongmans; Corsini, Alessandro; Thom, Bogaard; Jean Philippe, Malet. - STAMPA. - 34:(2014), pp. 57-82. [10.1007/978-94-007-6769-0_3]
Ulrich, Kniess; Julien, Travelletti; Alexander, Daehne; Dominika, Krzeminska; Gregory, Bievre; Denis, Jongmans; Corsini, Alessandro; Thom, Bogaard; Jean Philippe, Malet
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/991305
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