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Silvia Peruccacci

Researcher at National Research Council

Publications -  57
Citations -  5098

Silvia Peruccacci is an academic researcher from National Research Council. The author has contributed to research in topics: Landslide & Population. The author has an hindex of 26, co-authored 52 publications receiving 4010 citations.

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The rainfall intensity–duration control of shallow landslides and debris flows: an update

TL;DR: In this article, a global database of 2,626 rainfall events that have resulted in shallow landslides and debris flows was compiled through a thorough literature search, and the rainfall and landslide information was used to update the dependency of the minimum level of rainfall duration and intensity likely to result in shallow landslide and debris flow established by Nel Caine in 1980.
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Rainfall thresholds for the initiation of landslides in central and southern Europe

TL;DR: In this paper, the authors proposed new empirical rainfall thresholds for the initiation of landslides for the Central European Adriatic Danubian South-Eastern Space (CADSES) area, located in central and southern Europe.
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Rainfall thresholds for the possible occurrence of landslides in Italy

TL;DR: In this paper, a catalogue of 753 rainfall events that have resulted in landslides in Italy was compiled and used to determine the minimum rainfall conditions necessary for landslide occurrence in Italy and in the Abruzzo Region, central Italy.
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Optimal landslide susceptibility zonation based on multiple forecasts

TL;DR: In this paper, the authors exploited environmental and multi-temporal landslide information for an area in Umbria, Italy, to produce four single and two combined landslide susceptibility zonations.
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Lithological and seasonal control on rainfall thresholds for the possible initiation of landslides in central Italy

TL;DR: In this paper, a catalogue of 442 rainfall events with landslides in the Abruzzo, Marche, and Umbria regions, central Italy, between February 2002 and August 2010 was compiled, and the duration D (in hours) and the cumulated (total) event rainfall E (in mm) using rainfall measurements obtained from a dense network of 150 rain gauges.