Geodetic glacier mass balances of Stubacher Sonnblickkees, Hohe Tauern Range, Eastern Alps, Austria, 2018/2019

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Autor principal: Siebenbrunner, Anna
Formato: Dataset Open Access
Lenguaje:en
Publicado: PANGAEA 2026
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author Siebenbrunner, Anna
author_facet Siebenbrunner, Anna
collection Datos científicos de ciencias marinas y ambientales
contents This dataset provides annual geodetic mass balance measurements of the Stubacher Sonnblickkees glacier in the Hohe Tauern, Austria, derived from UAV-borne photogrammetry. Data collection began in 2019 and will be continued with yearly updates. The dataset was produced within an intercomparison exercise designed to evaluate differences between the geodetic, glaciological, and semi-direct methods for determining glacier mass balance. High-resolution elevation models generated from UAV surveys enable precise estimation of annual surface changes. The dataset supports long-term monitoring of glacier evolution in the Eastern Alps and contributes to the assessment of methodological uncertainties in mass balance observations.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_991027
institution PANGAEA
language en
publishDate 2026
publisher PANGAEA
record_format pangaea
spellingShingle Geodetic glacier mass balances of Stubacher Sonnblickkees, Hohe Tauern Range, Eastern Alps, Austria, 2018/2019
Siebenbrunner, Anna
DATE/TIME; Date/time end; Drone; Geodetic mass balance; GLAC; Glacier area changes; Glaciers; Glaciers_austria; Glaciers Austria; Ground sampling distance; Hohe Tauern National Park; Mass balance; Mass balance, annual, geodetic; Photogrammetry; Root Mean Squared Error; Sampling/measurements on glacier; Sonnblickkees; SSK; Stubacher Sonnblick, Hohe Tauern, Austria; Stubacher Sonnblickkees; Total area; UAV; Unmanned Aerial Vehicle (UAV) photogrammetry
This dataset provides annual geodetic mass balance measurements of the Stubacher Sonnblickkees glacier in the Hohe Tauern, Austria, derived from UAV-borne photogrammetry. Data collection began in 2019 and will be continued with yearly updates. The dataset was produced within an intercomparison exercise designed to evaluate differences between the geodetic, glaciological, and semi-direct methods for determining glacier mass balance. High-resolution elevation models generated from UAV surveys enable precise estimation of annual surface changes. The dataset supports long-term monitoring of glacier evolution in the Eastern Alps and contributes to the assessment of methodological uncertainties in mass balance observations.
title Geodetic glacier mass balances of Stubacher Sonnblickkees, Hohe Tauern Range, Eastern Alps, Austria, 2018/2019
topic DATE/TIME; Date/time end; Drone; Geodetic mass balance; GLAC; Glacier area changes; Glaciers; Glaciers_austria; Glaciers Austria; Ground sampling distance; Hohe Tauern National Park; Mass balance; Mass balance, annual, geodetic; Photogrammetry; Root Mean Squared Error; Sampling/measurements on glacier; Sonnblickkees; SSK; Stubacher Sonnblick, Hohe Tauern, Austria; Stubacher Sonnblickkees; Total area; UAV; Unmanned Aerial Vehicle (UAV) photogrammetry
url https://doi.org/10.1594/PANGAEA.991027