Assessment methodology for the prediction of landslide dam hazard

Author:

Dal Sasso S. F.,Sole A.,Pascale S.,Sdao F.,Bateman Pinzòn A.,Medina V.

Abstract

Abstract. This paper represents a contribution to the study of hazard caused by the interaction between landslides and river courses. The effects of such interferences are often catastrophic and could include the formation of upstream lakes, potential dam failure, river bed dynamics and morphological alterations. These scenarios could be substantially reduced if it was possible to predict the eventuality that a moving landslide would block the river. This is a complex topic because it involves composite geomorphic phenomena concerning both hillslope and river systems and their interpretation, through model approaches, is still under development and testing. In this study, a methodology developed in the framework of European Research Project IMPRINTS (FP7) was adopted and integrated in order to identify the areas of triggering and propagation of landslides and to characterize the possible scenarios of the interaction with river networks. Different deterministic and probabilistic approaches, calibrated using a case test in the middle valley of the Noce River in Basilicata (Italy), were applied and compared at basin scale.

Publisher

Copernicus GmbH

Subject

General Earth and Planetary Sciences

Reference30 articles.

1. Bregoli, F., Ciervo, F., Medina, V., Batemann, A., Hurlimann, M., Chevalier, G., and Papa, M.: Development of preliminary assessment tools to evaluate debris flow risks. A: XVIII International Conference on Computational Methods in Water Resources, CMWR, 1–9, 2010.

2. Carrara, A., Crosta, G., and Frattini, P.: Comparing models of debris-flow susceptibility in the alpine environment, Geomorphology, 94, 353–378, 2008.

3. Casagli, N. and Ermini, L.: Geomorphic Analysis of Landslide Dams in the Northern Apennine – Transactions, Japanese Geomorphological Union, 20–3, 219–249, 1999.

4. Corominas, J.: The angle of reach as a mobility index for small and large landslides, Can. Geotech. J., 33, 260–271, 1996.

5. Costa, J. E. and Schuster, R. L.: The formation and failure of natural dams, Geol. Soc. Am. Bull., 100, 1054–1068, 1988.

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