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Deep learning forecast of rainfall-induced shallow landslides

Earth Sciences

Deep learning forecast of rainfall-induced shallow landslides

A. C. Mondini, F. Guzzetti, et al.

This study, conducted by Alessandro C. Mondini, Fausto Guzzetti, and Massimo Melillo, reveals a groundbreaking deep-learning approach to accurately predict rainfall-triggered landslides based on two decades of data from Italy. The findings suggest a transformative potential for operational forecasting by leveraging rainfall measurements and meteorological predictions.... show more
Abstract
Rainfall triggered landslides occur in all mountain ranges posing threats to people and the environment. Given the projected climate changes, the risk posed by landslides is expected to increase, and the ability to anticipate their occurrence is key for effective risk reduction. Empirical thresholds and physically-based models are used to anticipate the short-term occurrence of rainfall-induced shallow landslides. But, evidence suggests that they may not be effective for operational forecasting over large areas. We propose a deep-learning based strategy to link rainfall to landslide occurrence. We inform and test the system with rainfall and landslide data available for the last 20 years in Italy. Our results indicate that it is possible to anticipate effectively the occurrence of rainfall-induced landslides over large areas, and that their location and timing are controlled primarily by the precipitation, opening to the possibility of operational landslide forecasting based on rainfall measurements and quantitative meteorological forecasts.
Publisher
Nature Communications
Published On
Apr 28, 2023
Authors
Alessandro C. Mondini, Fausto Guzzetti, Massimo Melillo
Tags
landslides
rainfall
deep learning
forecasting
meteorological data
Italy
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