Low cost, multiscale and multi-sensor application for flooded area mapping
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Published:2018-05-30
Issue:5
Volume:18
Page:1493-1516
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ISSN:1684-9981
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Container-title:Natural Hazards and Earth System Sciences
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language:en
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Short-container-title:Nat. Hazards Earth Syst. Sci.
Author:
Giordan DanieleORCID, Notti DavideORCID, Villa AlfredoORCID, Zucca Francesco, Calò FabianaORCID, Pepe AntonioORCID, Dutto Furio, Pari Paolo, Baldo Marco, Allasia Paolo
Abstract
Abstract. Flood mapping and estimation of the maximum water depth are essential
elements for the first damage evaluation, civil protection intervention
planning and detection of areas where remediation is needed. In this work, we present and discuss a methodology for mapping and
quantifying flood severity over floodplains. The proposed methodology
considers a multiscale and multi-sensor approach using free or low-cost
data and sensors. We applied this method to the November 2016 Piedmont
(northwestern
Italy) flood. We first mapped the flooded areas at the basin scale using
free satellite data from low- to medium-high-resolution from both the SAR
(Sentinel-1, COSMO-Skymed) and multispectral sensors (MODIS, Sentinel-2).
Using very- and ultra-high-resolution images from the low-cost aerial
platform and remotely piloted aerial system, we refined the flooded zone and
detected the most damaged sector. The presented method considers both
urbanised and non-urbanised areas. Nadiral images have several
limitations, in particular in urbanised areas, where the use of terrestrial
images solved this limitation. Very- and ultra-high-resolution images were
processed with structure from motion (SfM) for the realisation of 3-D
models. These data, combined with an available digital terrain model,
allowed us to obtain maps of the flooded area, maximum high water area and
damaged infrastructures.
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences
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