Poster + Paper
19 October 2023 Harvesting remote sensing observations for quantifying burned area and built-up losses from the 2021 wildfires in Greece
Alexandros Paganias, Christoforos Pappas
Author Affiliations +
Conference Poster
Abstract
Mediterranean regions are heavily exposed to wildfires that can result in devastating casualties and infrastructure damage. Greece has been particularly affected by wildfires during recent years and the accurate mapping of the fire-exposed areas is essential. This can enhance our process understanding on such natural hazards, also supporting practitioners and decision-makers. Here, we combined remote sensing observations from the Copernicus Sentinel-2A satellite with GIS techniques to delineate the spatial extent and built-up losses at three example locations over Greece that were substantially affected by the summer 2021 wildfires, namely the regions of Northern Evia, Eastern Attica, and Achaia. The overall burned areas, as quantified with the pre- and post-fire Normalized Burn Ratio (i.e., dNBR), ranged from about 3 km2 to more than 500 km2 , while the exposed built-up features (buildings, roads, etc.) vary between the study regions following site-specific characteristics (built-up density, urban/rural interface, topography, etc.). The combination of publicly available remote sensing Earth observations and GIS techniques allowed us to obtain quantitative insights on the urban features exposed to these wildfires and their variability between the examined locations.
(2023) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Alexandros Paganias and Christoforos Pappas "Harvesting remote sensing observations for quantifying burned area and built-up losses from the 2021 wildfires in Greece", Proc. SPIE 12735, Remote Sensing Technologies and Applications in Urban Environments VIII, 127350P (19 October 2023); https://doi.org/10.1117/12.2680887
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KEYWORDS
Fire

Buildings

Roads

Land cover

Remote sensing

Forest fires

Satellites

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