Coastal areas are more and more exposed to the effects of climatic change. Intenselocal rainfalls increases the frequency of flash floods and/or flow-like subaerial and af-terwards submarine landslides. The overall phenomenon of flash flood is complex andinvolves different phases strongly connected: heavy precipitations in a short period oftime, soil erosion, fan deltas forming at mouth and hyperpycnal flows and/or landslidesoccurrence. Such interrelated phases were separately modelled for simulation purposesby different computational models: PDE methods for weather forecasts and sedimentproduction estimation , Cellular Automata (CA) for soil erosion by rainfall and"subaerial" sediment transport and deposit, the behavior in the earth/sea interfaceand subsequent submarine flow may be modelled by the CA model SCIDDICA. Thisresearch studies the coupling of these models and introduces in SCIDDICA the processconcerning the interaction currents/subaqueous sediments. A first validation of SCID-DICA in simple cases of submarine current/sediment interaction looks satisfying. Ouraim is to complete the model and validate it on the 2016 Bagnara case, whosedata are sufficient for a complete simulation.

Final Sediment Outcome from Meteorological Flood Events: a Multi-ModellingApproach

Lupiano V;Calidonna CR;Avolio E;Larosa S;Alberico I;Pelosi N;Lirer F;Di Gregorio S
2019

Abstract

Coastal areas are more and more exposed to the effects of climatic change. Intenselocal rainfalls increases the frequency of flash floods and/or flow-like subaerial and af-terwards submarine landslides. The overall phenomenon of flash flood is complex andinvolves different phases strongly connected: heavy precipitations in a short period oftime, soil erosion, fan deltas forming at mouth and hyperpycnal flows and/or landslidesoccurrence. Such interrelated phases were separately modelled for simulation purposesby different computational models: PDE methods for weather forecasts and sedimentproduction estimation , Cellular Automata (CA) for soil erosion by rainfall and"subaerial" sediment transport and deposit, the behavior in the earth/sea interfaceand subsequent submarine flow may be modelled by the CA model SCIDDICA. Thisresearch studies the coupling of these models and introduces in SCIDDICA the processconcerning the interaction currents/subaqueous sediments. A first validation of SCID-DICA in simple cases of submarine current/sediment interaction looks satisfying. Ouraim is to complete the model and validate it on the 2016 Bagnara case, whosedata are sufficient for a complete simulation.
2019
Istituto di Scienze dell'Atmosfera e del Clima - ISAC
Inglese, Medio (1100-1500)
Numerical Computations: Theory and Algorithms - NUMTA 2019
120
120
1
9788874581016
http://si.dimes.unical.it/~yaro/numta2019/pdf/Book_NUMTA2019.pdf
Sì, ma tipo non specificato
June 15 - 21, 2019
Le Castella, Crotone
Extreme Event; Flood; Sediment Transport and Deposition; Subaerialand Subaqueous Flow-like landslide; Modelling and Simulation
12
none
Lupiano, V; Calidonna, Cr; Avolio, E; Larosa, S; Cianflone, G; Viscomia, ; De Rosa, R; Dominici, R; Alberico, I; Pelosi, N; Lirer, F; Di Gregorio, S...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/369485
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