This research is a novel contribution to understanding the impact of different hydrological hazards like floods, storm surges or sea level rise in complex Climate Change scenarios, that represent the benchmarks against which the observational requirements for upcoming satellite missions are based. Funded through the Next Generation EU program, Italy is developing IRIDE, a preliminary, cost-effective, optimized design of hybrid satellite constellations under the National Recovery and Resilience Plan.

Integrated Ecological, Physical and Social Vulnerability Assessment for Promoting New Constellations of Multisensory Satellites

Valentini E.
Conceptualization
;
2023

Abstract

This research is a novel contribution to understanding the impact of different hydrological hazards like floods, storm surges or sea level rise in complex Climate Change scenarios, that represent the benchmarks against which the observational requirements for upcoming satellite missions are based. Funded through the Next Generation EU program, Italy is developing IRIDE, a preliminary, cost-effective, optimized design of hybrid satellite constellations under the National Recovery and Resilience Plan.
2023
Istituto di Scienze Polari - ISP - sede Secondaria Roma
Coastal vulnerability, Ecology, Satellite Mission
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/534531
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