This paper proposes a Multidisciplinary Decision Support System (MDSS) as an approach to manage rainfall induced shallow landslides of the flow type (flowslides) in pyroclastic deposits. We stress the need to combine information from the fields of meteorology, geology, hydrology, geotechnics and economics to support the agencies engaged in land monitoring and management. The MDSS consists of a “simulation chain” to link rainfall to effects in terms of infiltration, slope stability and vulnerability. This “simulation chain” was developed at the Euro-Mediterranean Centre for Climate Change (CMCC) (meteorological aspects), at the Geotechnical Laboratory of the Second University of Naples (hydrological and geotechnical aspects) and at the Department of Economics of the University of Naples “Federico II” (economic aspects). The results obtained from the application of this simulation chain in the Cervinara area during eleven years of research allowed in-depth analysis of the mechanisms underlying a flowslide in pyroclastic soil.

A “simulation chain” to define a Multidisciplinary Decision Support System for landslide risk management in pyroclastic soils / E., Damiano; P., Mercogliano; Netti, Nadia; L., Olivares. - In: NATURAL HAZARDS AND EARTH SYSTEM SCIENCES. - ISSN 1561-8633. - 12:4(2012), pp. 989-1008. [10.5194/nhess-12-989-2012]

A “simulation chain” to define a Multidisciplinary Decision Support System for landslide risk management in pyroclastic soils

NETTI, NADIA;
2012

Abstract

This paper proposes a Multidisciplinary Decision Support System (MDSS) as an approach to manage rainfall induced shallow landslides of the flow type (flowslides) in pyroclastic deposits. We stress the need to combine information from the fields of meteorology, geology, hydrology, geotechnics and economics to support the agencies engaged in land monitoring and management. The MDSS consists of a “simulation chain” to link rainfall to effects in terms of infiltration, slope stability and vulnerability. This “simulation chain” was developed at the Euro-Mediterranean Centre for Climate Change (CMCC) (meteorological aspects), at the Geotechnical Laboratory of the Second University of Naples (hydrological and geotechnical aspects) and at the Department of Economics of the University of Naples “Federico II” (economic aspects). The results obtained from the application of this simulation chain in the Cervinara area during eleven years of research allowed in-depth analysis of the mechanisms underlying a flowslide in pyroclastic soil.
2012
A “simulation chain” to define a Multidisciplinary Decision Support System for landslide risk management in pyroclastic soils / E., Damiano; P., Mercogliano; Netti, Nadia; L., Olivares. - In: NATURAL HAZARDS AND EARTH SYSTEM SCIENCES. - ISSN 1561-8633. - 12:4(2012), pp. 989-1008. [10.5194/nhess-12-989-2012]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/461002
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