Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Satellite-based flood mapping of coastal floods: The Senegal River estuary study case

Domaine:

climategeospatial

Type de record:

paper
Créateur:
MenSalTurDel
Éditeur:
MorCen
Éditeur:
CCSDElsevier
Hôte:avatar
(IF 7.6;Q1) International audience This study employs an integrated approach, combining remote sensing and numerical modelling techniques, to characterize flood-prone regions resulting from the combined effects of extreme river water elevations and long- term sea-level rise in the Senegal River Estuary. Four different case scenarios of hydrodynamic conditions have been investigated to provide a quantitative assessment of flooding. Simultaneously, a Land Type classification using machine learning techniques has been conducted. Subsequently, the resulting land type map has been integrated with flood mapping simulations obtaining the different land types impacted by flood dynamics. The analysis shows that the buildings classification is the most impacted followed by vegetation and roads. This study highlights the flood-affected areas at a district level, offering relevant understanding for the development of effective adaptation strategies, disaster planning, adjusting policies with scientific knowledge, and supporting adaptive governance in the Senegal River Estuary.

Visit

normandie-univ.hal.science

Tasks

computer visionimage classification

Tags

FloodSt LouisSenegal RiverSatelliteLand typeSenegal[SDE]Environmental Sciences

Licenses

https://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/OpenAccess

Similaires

Intercomparison of Automated Near-Real-Time Flood Mapping Algorithms Using Satellite Data and DEM-Based Methods: A Case Study of 2022 Madagascar FloodSensor-Based River Monitoring System: A Case for Kikuletwa River Floods in TanzaniaMapping Global Floods with 10 Years of Satellite Radar DataFLOOD HAZARD MAPPING OF THE LOWER BENUE RIVER BASINThe salinity responses of tropical estuaries to changes in freshwater discharge, tidal mixing and geomorphology: case study of the man-affected Senegal River Estuary (West Africa)Evaluation of the satellite-based Global Flood Detection System for measuring river discharge: influence of local factors

Intercomparison of Automated Near-Real-Time Flood Mapping Algorithms Using Satellite Data and DEM-Based Methods: A Case Study of 2022 Madagascar Flood

Numerous algorithms have been developed to automate the process of delineating water surface maps fo

Sensor-Based River Monitoring System: A Case for Kikuletwa River Floods in Tanzania

Reliable and accurate flood prediction is a challenging task in poorly gauged basins due to data sca

Mapping Global Floods with 10 Years of Satellite Radar Data

Floods cause extensive global damage annually, making effective monitoring essential. While satellit

FLOOD HAZARD MAPPING OF THE LOWER BENUE RIVER BASIN

Abstract Flooding is a recurrent and intensifying hazard in West Africa, exacerbat

The salinity responses of tropical estuaries to changes in freshwater discharge, tidal mixing and geomorphology: case study of the man-affected Senegal River Estuary (West Africa)

Salinity in estuaries is influenced by a variety of processes including tidal advecti

Evaluation of the satellite-based Global Flood Detection System for measuring river discharge: influence of local factors

Abstract. One of the main challenges for global hydrological modelling is the limited availability o