CAESAR is a two dimensional CA (Cellular Automata) model used to simulate the morphological changes of watersheds and rivers. For every model iteration, a DEM of a river basin is modified according to the water and sediment fluxes and/or to the rainfall data entered by the user. CAESAR was initially designed to simulate the geomorphologic response of river catchment to changes in climate or land cover for relevant time scales. More recent developments of the model allows users to model over smaller time and space scales and in more complex morphological situation (river meandering, for example). This paper aims to describe CAESAR and its capabilities to the Italian scientific community, where it is still almost unknown. Some applications are shown to simulate the presence of hydraulics works interfering with the stream. A flow and sediment transport model indeed allows to better evaluate the functionality of hydraulic features of the river and to forecast its effects on the river bed-alluvial plain system.

CAESAR: A model to simulate river dynamics [CAESAR: Un modello per la simulazione delle dinamiche d'alveo]

Marchesini;
2008

Abstract

CAESAR is a two dimensional CA (Cellular Automata) model used to simulate the morphological changes of watersheds and rivers. For every model iteration, a DEM of a river basin is modified according to the water and sediment fluxes and/or to the rainfall data entered by the user. CAESAR was initially designed to simulate the geomorphologic response of river catchment to changes in climate or land cover for relevant time scales. More recent developments of the model allows users to model over smaller time and space scales and in more complex morphological situation (river meandering, for example). This paper aims to describe CAESAR and its capabilities to the Italian scientific community, where it is still almost unknown. Some applications are shown to simulate the presence of hydraulics works interfering with the stream. A flow and sediment transport model indeed allows to better evaluate the functionality of hydraulic features of the river and to forecast its effects on the river bed-alluvial plain system.
2008
Italiano
21
1
207
214
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Sì, ma tipo non specificato
river
morphology
modeling
4
info:eu-repo/semantics/article
262
Coulthard, T; de Rosa, P; Marchesini, Ivan; I,
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/411528
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