Aug 2026· Journal multidisciplinary science· 0 citations· 20 references
Abstract
Flood susceptibility mapping that integrates hydrological and geospatial information remains limited at the sub-watershed scale, particularly in rapidly developing coastal urban areas. This study maps flood susceptibility in the Batang Kandis Sub-watershed, Padang City, by integrating hydrological data through Google Earth Engine (GEE). A quantitative spatial approach was employed using six parameters: rainfall, elevation, slope, soil texture, land cover, and proximity to rivers. Each parameter was classified, scored, and weighted using the Analytic Hierarchy Process (AHP), after which a weighted overlay was applied to generate the Flood Susceptibility Index (FSI). The results indicate that 58.77% of the study area is classified as having very high flood susceptibility, while 21.39% is classified as highly susceptible. These zones are concentrated primarily in downstream areas characterized by low elevations, gentle slopes, extensive built-up surfaces, and close proximity to river networks. Validation against historical inundation data from Ina-Geoportal demonstrated 97.10% spatial correspondence with areas classified as having high or very high susceptibility. These findings confirm that integrating hydrological and geospatial parameters through GEE provides a reliable approach to identifying flood-prone areas at the sub-watershed scale. The resulting susceptibility map provides an evidence-based foundation for prioritizing flood mitigation, strengthening watershed management, and supporting adaptive spatial planning in rapidly developing coastal urban areas.
Flood susceptibility mapping is vital for disaster risk reduction in Bangladesh’s northeastern region, where recurrent floods severely affect livelihoods and ecosystems. The study focuses on the Sunamganj district in Bangladesh, one of the most flood-prone areas in the country because of its low-lying terrain, proximit...
This study evaluates the influence of topographic and hydrological factors on flood susceptibility
in the South–South region of Nigeria using Geographic Information Systems (GIS), Remote
Sensing, and the Analytical Hierarchy Process (AHP). Digital Elevation Model (DEM), slope,
aspect, drainage density, stream densit...
Anthony Chikaike Nwinye-Harrison· IIARD International Journal...· 0 citations
Flooding is one of the most frequent and devastating natural hazards affecting urban areas globally, leading to considerable social, economic, and environmental impacts. In the present study, a novel framework for flood susceptibility mapping is proposed using the stochastic Hill‐Climbing (SHC) method in the Analytic...
Flooding remains one of the most severe and recurrent natural hazards in sub-Saharan Africa, posing persistent threats to rural livelihoods, infrastructure, and environmental stability. In Malawi, the Lower Shire River Valley, particularly Nsanje district, is highly vulnerable to recurrent flooding due to climatic vari...
Charles Bakolo, L. Ngwira, Kennedy Nazombe et al.· PLoS ONE· 0 citations
Flood susceptibility assessment in data-scarce arid catchments is constrained by limited hydrological observations and incomplete historical flood inventories. This study developed a Geographic Information System (GIS)-based Fuzzy Analytic Hierarchy Process (FAHP) framework to map flood susceptibility across the Najran...
Fawaz Alzabari· Frontiers in Earth Science· 0 citations
Floods are one of the most damaging natural disasters in the world, causing significant socioeconomic disruptions, especially in countries like India that are controlled by the monsoon. This study used an integrated method that included remote sensing (RS), Geographic Information Systems (GIS), and the analytical hie...
Rima Das, Anil Kumar Mishra, Murtaza Hasan et al.· Water Practice & Technol...· 0 citations
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