Terrestrial laser scanning data of the Nesslrinna landslide close to Obergurgl, Austria acquired during the Innsbruck Summer School of Alpine Research [dataset]

Terrestrial laser scanning (TLS) allows one to acquire point clouds representing the surface at a certain time (epoch). Acquiring at least two point clouds at two different epochs enables the detection of surface changes caused by certain environmental processes. This data publication contains point...

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Main Authors: Pfeiffer, Jan (Author) , Wujanz, Daniel (Author) , Zieher, Thomas (Author) , Rutzinger, Martin (Author) , Scaioni, Marco (Author) , Höfle, Bernhard (Author) , Lindenbergh, Roderik (Author) , Oude Elberink, Sander (Author) , Pirotti, Francesco (Author) , Bremer, Magnus (Author) , Hämmerle, Martin (Author)
Format: Database Research Data
Language:English
Published: Bremerhaven, Bremen PANGAEA - Data Publisher for Earth & Environmental Science 2019
DOI:10.1594/PANGAEA.901293
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Online Access:Resolving-System, kostenfrei, Volltext: https://doi.org/10.1594/PANGAEA.901293
Verlag, kostenfrei, Volltext: https://doi.pangaea.de/10.1594/PANGAEA.901293
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Author Notes:Jan Pfeiffer, Daniel Wujanz, Thomas Zieher, Martin Rutzinger, Marco Scaioni, Bernhard Höfle, Roderik Lindenbergh, Sander Oude Elberink, Francesco Pirotti, Magnus Bremer, Martin Hämmerle
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Summary:Terrestrial laser scanning (TLS) allows one to acquire point clouds representing the surface at a certain time (epoch). Acquiring at least two point clouds at two different epochs enables the detection of surface changes caused by certain environmental processes. This data publication contains point clouds representing the surface of the "Nesslrinna" landslide and its surrounding located on an eastern slope between Zwieselstein and Obergurgl right below the Timmelsjoch toll station. Point clouds were acquired during the Innsbruck Summer School of Alpine Research "Close Range Sensing Techniques in Alpine Terrain" using different TLS sensors. Comparing different epochs enables the detection of surface changes that have occurred due to landslide activity between each acquisition date.
Item Description:Gesehen am 18.06.2024
Physical Description:Online Resource
DOI:10.1594/PANGAEA.901293