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Accuracy assessment of digital terrain model dataset sources for hydrogeomorphological modelling in small mediterranean catchments

  • Digital terrain models (DTMs) are a fundamental source of information in Earth sciences. DTM-based studies, however, can contain remarkable biases if limitations and inaccuracies in these models are disregarded. In this work, four freely available datasets, including Shuttle Radar Topography Mission C-Band Synthetic Aperture Radar (SRTM C-SAR V3 DEM), Advanced Spaceborne Thermal Emission and Reflection Radiometer Global Digital Elevation Map (ASTER GDEM V2), and two nationwide airborne light detection and ranging (LiDAR)-derived DTMs (at 5-m and 1-m spatial resolution, respectively) were analysed in three geomorphologically contrasting, small (3–5 km2) catchments located in Mediterranean landscapes under intensive human influence (Mallorca Island, Spain). Vertical accuracy as well as the influence of each dataset’s characteristics on hydrological and geomorphological modelling applicability were assessed by using ground-truth data, classic geometric and morphometric parameters, and a recently proposed index of sediment connectivity.Digital terrain models (DTMs) are a fundamental source of information in Earth sciences. DTM-based studies, however, can contain remarkable biases if limitations and inaccuracies in these models are disregarded. In this work, four freely available datasets, including Shuttle Radar Topography Mission C-Band Synthetic Aperture Radar (SRTM C-SAR V3 DEM), Advanced Spaceborne Thermal Emission and Reflection Radiometer Global Digital Elevation Map (ASTER GDEM V2), and two nationwide airborne light detection and ranging (LiDAR)-derived DTMs (at 5-m and 1-m spatial resolution, respectively) were analysed in three geomorphologically contrasting, small (3–5 km2) catchments located in Mediterranean landscapes under intensive human influence (Mallorca Island, Spain). Vertical accuracy as well as the influence of each dataset’s characteristics on hydrological and geomorphological modelling applicability were assessed by using ground-truth data, classic geometric and morphometric parameters, and a recently proposed index of sediment connectivity. Overall vertical accuracy—expressed as the root mean squared error (RMSE) and normalised median deviation (NMAD)—revealed the highest accuracy for the 1-m (RMSE = 1.55 m; NMAD = 0.44 m) and 5-m LiDAR DTMs (RMSE = 1.73 m; NMAD = 0.84 m). Vertical accuracy of the SRTM data was lower (RMSE = 6.98 m; NMAD = 5.27 m), but considerably higher than for the ASTER data (RMSE = 16.10 m; NMAD = 11.23 m). All datasets were affected by systematic distortions. Propagation of these errors and coarse horizontal resolution caused negative impacts on flow routing, stream network, and catchment delineation, and to a lower extent, on the distribution of slope values. These limitations should be carefully considered when applying DTMs for catchment hydrogeomorphological modelling.show moreshow less

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Author details:Lukas GrafORCiD, Mariano Moreno-de-las-HerasORCiD, Maurici RuizORCiD, Aleix CalsamigliaORCiD, Julián García-ComendadorORCiD, Josep FortesaORCiD, José A. López-TarazónORCiD, Joan EstranyORCiD
DOI:https://doi.org/10.3390/rs10122014
ISSN:2072-4292
Title of parent work (English):Remote sensing
Publisher:MDPI
Place of publishing:Basel
Publication type:Article
Language:English
Date of first publication:2018/12/12
Publication year:2018
Release date:2021/07/30
Tag:DTM comparison; DTM vertical accuracy; Mediterranean catchments; digital terrain models; hydrogeomorphological modelling
Volume:10
Issue:12
Number of pages:26
Funding institution:State Research Agency of the Spanish Ministry of Science, Innovation and Universities [CGL2017-88200-R, IJCI-2015-26463]; European Regional Development Funds (ERDF, EU)European Union (EU); German Academic Exchange Service (DAAD)Deutscher Akademischer Austausch Dienst (DAAD); Ministry of Innovation, Research and Tourism of the Autonomous Government of the Balearic Islands [FPI/2048/2017]; Spanish Ministry of Economy and Competitiveness [BES-2013-062887]; Spanish Ministry of Education and Culture [FPU15/05239]; Ministry of Innovation, Research and Tourism of the Balearic Islands Autonomous Government [CAIB PD/038/2016]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Umweltwissenschaften und Geographie
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
Publishing method:Open Access / Gold Open-Access
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License (German):License LogoCC-BY - Namensnennung 4.0 International
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