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Hydrogeomorphic response to extreme rainfall in headwater systems: Flash floods and debris flows

handle: 20.500.14243/253379 , 11577/3040729
Flash floods and debris flows develop at space and time scales that conventional observation systems for rainfall, streamflow and sediment discharge are not able to monitor. Consequently, the atmospheric, hydrological and geomorphic controls on these hydrogeomorphic processes are poorly understood, leading to highly uncertain warning and risk management. On the other hand, remote sensing of precipitation and numerical weather predictions have become the basis of several flood forecasting systems, enabling increasingly accurate detection of hazardous events. The objective of this paper is to provide a review on current European and international research on early warning systems for flash floods and debris flows. We expand upon these themes by identifying: (a) the state of the art; (b) knowledge gaps; and (c) suggested research directions to advance warning capabilities for extreme hydrogeomorphic processes. We also suggest three areas in which advancements in science will have immediate and important practical consequence, namely development of rainfall estimation and nowcasting schemes suited to the specific space-time scales, consolidating physical, engineering and social datasets of flash floods and debris-flows, integration of methods for multiple hydrogeomorphic hazard warning.
- University of Geneva Switzerland
- Hebrew University of Jerusalem Israel
- National Research Council Italy
- University of Padua Italy
- University of Bern Switzerland
info:eu-repo/classification/ddc/333.7-333.9, Flood risk management, Flash flood, Early warning systems, Debris flows, Hydrogeomorphology, Climate change, ddc: ddc:333.7-333.9
info:eu-repo/classification/ddc/333.7-333.9, Flood risk management, Flash flood, Early warning systems, Debris flows, Hydrogeomorphology, Climate change, ddc: ddc:333.7-333.9
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