Quantification and Postglacial evolution of an inner alpine sedimentary basin (Gradenmoos Basin, Hohe Tauern)
Creators
Description
The overall objective of this thesis is the quantification of sediment storage and the reconstruction of postglacial landscape evolution within the glacially overdeepened Gradenmoos Basin (subcatchment size: 4.1 km2; basin floor elevation: 1920 m) in the central Gradenbach catchment (Schober Range, Hohe Tauern, Austrian Alps). Following the approach of denudation-accumulation-systems, most reliable results are obtained (1) if sediment output of a system can be neglected for an established period of time, (2) if sediment storage can be assessed with a high level of accuracy, (3) if the onset of sedimentation and amounts of initially stored sediments are known, and (4) if sediment contributing areas can be clearly delimited. Due to spatial scale and topographic characteristics, all mentioned aspects are fulfilled to a high degree within the studied basin. Applied methods include surface, subsurface and temporal investigations. Digital elevation data is derived from terrestrial laserscanning and geomorphologic mapping. The quantification of sediment storage is based on core drillings, geophysical methods (DC resistivity, refraction seismic, and ground penetrating radar), as well as GIS and 3D modelling. Radiocarbon dating and palynological analyses are additionally used to reconstruct the postglacial infilling progress of the basin. The study reveals that a continuous postglacial stratigraphic record is archived in the basin. As proposed by Lieb (1987) timing of basin deglaciation could be verified to late-Egesen times by means of radiocarbon ages (oldest sample just above basal till: 10.4 ka cal. BP) and first palynologic results. Lateglacial oscillations seem to have effectively scoured the basin, leaving only a shallow layer of basal till. The analysis of postglacial sedimentation in the basin is further improved by the existence of a former lake in the basin lasting for up to 7500 years until approx. 3.7 ka cal. BP. Both, the stratigraphic (fine, partly laminated sediment) and the palynologic record (Pediastrum; requires freshwater environments) indicates lake existence. Radiocarbon ages obtained from the sediment cores (21 samples) indicate spatial and temporal variability of basin sedimentation. Sedimentation rates reach a maximum of 7.5 mm/a in the central part of the basin and start to decrease after 3.7 ka BP. Initial rates (1 - 2 mm/a) are significantly lower in the distal part of the basin before rising to a delayed peak which is interpreted as a 'sedimentary wave' advancing into the basin. Based on these findings a model of postglacial basin evolution is proposed. Total sediment storage amounts to 17.6 Mio m3. The largest part of this volume refers to debris cone storage (75 %) followed by lacustrine and fluvial deposits (20 %), a shallow layer of till underneath the present surface (8 %), as well as gravitational (5 %) and in situ sediments (1 %). Since debris cone deposits largely overly lacustrine/fluvial deposits the applied approach of 'vertical landform clipping' has been corrected for this effect increasing the portion of lacustrine/fluvial deposits to 30 % and reducing the share of debris cones deposits to 65 %. Whereas the gravitational process domain dominates sediment storage in the entire catchment, the majority of sediment in the basin refers to secondary deposits in the sediment cascade delivered by debris flow events. Postglacial rates of rockwall retreat are derived from these volumes for three different steep cirques draining into the basin. Corresponding rates reach values of up to 0.37/0.64 mm/a (3D/2D). Morphometric analyses of several catchments draining into the upper Möll revealed that Schober Range catchments (and in particular the Gradenbach catchment) are characterised by intense relief and large areas underlain by permafrost. However, even if rates of rockwall retreat would have been assumed to reach significantly higher values, they lie among the lower range of published rates in the Alps. (author)
Availability note (English)
Available from Salzburg University Library, Hofstallgasse 2-4, 5020 Salzburg (Austria)Additional details
Publishing Information
- Imprint Pagination
- 125 p.
INIS
- Country of Publication
- Austria
- Country of Input or Organization
- Austria
- INIS RN
- 45049276
- Subject category
- S58: GEOSCIENCES;
- Resource subtype / Literary indicator
- Thesis, Non-conventional Literature
- Descriptors DEI
- ALPS; AUSTRIA; BORON PHOSPHIDES; CARBON 14; ISOTOPE DATING; QUATERNARY PERIOD; SEDIMENTARY BASINS; SEDIMENTATION; STORAGE
- Descriptors DEC
- AGE ESTIMATION; BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; BORON COMPOUNDS; CARBON ISOTOPES; CENOZOIC ERA; DEVELOPED COUNTRIES; EUROPE; EVEN-EVEN NUCLEI; GEOLOGIC AGES; GEOLOGIC STRUCTURES; ISOTOPES; LIGHT NUCLEI; MOUNTAINS; NUCLEI; PHOSPHIDES; PHOSPHORUS COMPOUNDS; PNICTIDES; RADIOISOTOPES; WESTERN EUROPE; YEARS LIVING RADIOISOTOPES