On Earth, landslides occur in various morphological and climatic settings and can strongly affect the evolution of a landscape. On Mars, slope failures have been also observed since decades (e.g., [1], [2]), especially in the large canyons of Valles Marineris. In the perspective of a novel interest in the human settlement on the red planet it is important to explore the local environmental conditions and the possible hazards. For the purpose, we analyzed the geometrical features of landslides on Earth and Mars and compared the relationships between their geometrical parameters (i.e. landslide volumes, areas, drop heights and runout distances). Data for this study were collected using landslide catalogues available from several authors [3, 4, 5, 6, 7]. In particular, we selected rock and debris slides, rock avalanches on Earth and Mars and terrestrial submarine landslides. Having insights on the geometrical properties of the landslides on the two planets might provide tools for the understanding of the sliding mechanisms in different environments.

Geometrical properties of landslides on Earth and Mars

Brunetti MT;Ardizzone F;Peruccacci S;Guzzetti F
2019

Abstract

On Earth, landslides occur in various morphological and climatic settings and can strongly affect the evolution of a landscape. On Mars, slope failures have been also observed since decades (e.g., [1], [2]), especially in the large canyons of Valles Marineris. In the perspective of a novel interest in the human settlement on the red planet it is important to explore the local environmental conditions and the possible hazards. For the purpose, we analyzed the geometrical features of landslides on Earth and Mars and compared the relationships between their geometrical parameters (i.e. landslide volumes, areas, drop heights and runout distances). Data for this study were collected using landslide catalogues available from several authors [3, 4, 5, 6, 7]. In particular, we selected rock and debris slides, rock avalanches on Earth and Mars and terrestrial submarine landslides. Having insights on the geometrical properties of the landslides on the two planets might provide tools for the understanding of the sliding mechanisms in different environments.
2019
Istituto di Ricerca per la Protezione Idrogeologica - IRPI
landslides
Earth
Mars
Valles Marineris
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/372008
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