Catchment-scale patterns of geomorphic activity and vegetation distribution in an alpine glacier foreland (Kaunertal Valley, Austria)

Author(s)
Stefan Haselberger, Simon Scheper, Jan-Christoph Otto, Ulrich Zangerl, Lisa Maria Ohler, Robert Junker, Sabine Kraushaar
Abstract

The interaction between geomorphological and ecological processes plays a significant role in determining landscape patterns in glacier forelands. However, the spatial organization of this biogeomorphic mosaic remains unclear due to limited catchment-scale data. To address this gap, we used a multi-proxy analysis to map potential geomorphic activity related to surface changes induced by sediment transport on drift-mantled slopes and a glaciofluvial plain. High-resolution vegetation data were used to generate a catchment-scale map delineating vegetation cover and stability thresholds. The two maps were integrated, and an exploratory regression analysis was conducted to investigate the influence of geomorphic activity on vegetation colonization. The multi-proxy analysis resulted in an accurate mapping of catchment-wide geomorphic activity, with a validation accuracy ranging from 75.3% through field mapping to 85.9% through plot sampling. Through vegetation cover mapping, we identified biogeomorphic stability thresholds, revealing a mosaic of vegetation distribution. Distinct colonization patterns emerged across different geomorphic process groups, influenced by process magnitude and the time since the last disturbance event. The exploratory regression analysis showed that vegetation distribution is significantly affected by geomorphic processes. Based on the overlay of results regarding geomorphic activity and vegetation distribution, we suggest an age-independent framework that indicates four potential situations of biogeomorphic succession.

Organisation(s)
Department of Geography and Regional Research
External organisation(s)
Rheinische Friedrich-Wilhelms-Universität Bonn, Paris-Lodron Universität Salzburg, Universität Basel
Journal
Frontiers in Earth Science
Volume
11
ISSN
2296-6463
DOI
https://doi.org/10.3389/feart.2023.1280375
Publication date
2023
Peer reviewed
Yes
Austrian Fields of Science 2012
105404 Geomorphology
Keywords
ASJC Scopus subject areas
General Earth and Planetary Sciences
Portal url
https://ucrisportal.univie.ac.at/en/publications/ea1ac2f5-471c-4855-aa5b-2669dad3080e