Increasing spatio-temporal resolution for monitoring alpine solifluction using terrestrial laser scanners and 3D vector fields

Abstract: This article investigates the usage of terrestrial laser scanner (TLS) point clouds for monitoring the gradual movements of soil masses due to freeze–thaw activity and water saturation, commonly referred to as solifluction. Solifluction is a geomorphic process which is characteristic for hillslopes in (high-)mountain areas, primarily alpine periglacial areas and the arctic. The movement can reach millimetre-to-centimetre per year velocities, remaining well below the typical displacement mangitudes of other frequently monitored natural objects, such as landslides and glaciers. Hence, a better understanding of solifluction processes requires increased spatial and temporal resolution with relatively high measurement accuracy. To that end, we developed a workflow for TLS point cloud processing, providing a 3D vector field that can capture soil mass displacement due to solifluction with high fidelity. This is based on the common image-processing techniques of feature detection and tracking. The developed workflow is tested on a study area placed in Hohe Tauern range of the Austrian Alps with a prominent assemblage of solifluction lobes. The derived displacements were compared with the established geomonitoring approach with total station and signalized markers and point cloud deformation monitoring approaches. The comparison indicated that the achieved results were in the same accuracy range as the established methods, with an advantage of notably higher spatial resolution. This improvement allowed for new insights considering the solifluction processes

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch
Notes
Remote sensing. - 13, 6 (2021) , 1192, ISSN: 2072-4292

Event
Veröffentlichung
(where)
Freiburg
(who)
Universität
(when)
2021
Creator
Holst, Christoph
Janßen, Jannik
Jost, Berit
Blome, Martin
Dercks, Malte
Schoch-Baumann, Anna
Blöthe, Jan Henrik
Schrott, Lothar
Kuhlmann, Heiner
Medic, Tomislav

DOI
10.3390/rs13061192
URN
urn:nbn:de:bsz:25-freidok-1941677
Rights
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Last update
14.08.2025, 10:45 AM CEST

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Time of origin

  • 2021

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