Schmidt-hammer exposure-age dating (SHD) of sorted stripes on Juvflye, Jotunheimen (central South Norway): Morphodynamic and palaeoclimatic implications
- Author(s)
- Stefan Winkler, John A. Matthews, Stefan Haselberger, Jennifer Hill, Richard W. Mourne, Gerraint Owen, Peter Wilson
- Abstract
Measurements with an electronic Schmidt-hammer (RockSchmidt) were conducted on 23 sites of sorted stripes (periglacial patterned ground) on Juvflye, Jotunheimen (central South Norway). All were located above the current lower limit of alpine permafrost. Performing Schmidt-hammer exposure-age dating (SHD) based on application of a new local age-calibration equation for RRock-values yielded SHD-ages between 7975 ± 370 and 6660 ± 355 years ago, which are closely comparable to results obtained previously from sorted circles at the same location. The age estimates are interpreted as ‘composite’ ages indicative of upfreezing of boulders, lateral sorting, and subsequent stabilisation. Formation of patterned ground essentially ceased with the onset of the regional Holocene Thermal Maximum (HTM). Neither sorted stripe sites at higher altitude, continuously underlain by permafrost during the entire Holocene, nor those at lower altitudes affected by re-aggradation of permafrost in the late Holocene show signs of significant recent morphodynamic activity. Likely explanations for early- to mid-Holocene stabilisation include (1) substantial changes of soil moisture conditions and related thermodynamics within the active layer affecting frost action, (2) loss of fine-grained substrate matrix from the coarse stripes and hence reduced frost susceptibility, and (3) exhaustion of supply of boulders from the fines-dominated areas. Whereas the sorted stripe data set as a whole did not reproduce the altitudinal gradient characteristic of sorted circles on Juvflye, the strength of the relationship between sorted stripe mean RRock-values and altitude increased with declining slope gradient. Although interpretation of SHD-ages for patterned ground remains challenging, this successful application of the electronic Schmidt-hammer, with its increased efficiency and technical improvements over the mechanical Schmidt-hammer, offers considerable potential for future SHD-studies in both morphodynamic and palaeoclimatic contexts.
- Organisation(s)
- Department of Geography and Regional Research
- External organisation(s)
- Swansea University, University of Gloucestershire, University of the West of England, University of Ulster, Julius-Maximilians-Universität Würzburg
- Journal
- Geomorphology
- Volume
- 353
- No. of pages
- 19
- ISSN
- 0169-555X
- DOI
- https://doi.org/10.1016/j.geomorph.2019.107014
- Publication date
- 2020
- Peer reviewed
- Yes
- Austrian Fields of Science 2012
- 105404 Geomorphology
- Keywords
- ASJC Scopus subject areas
- Earth-Surface Processes
- Portal url
- https://ucrisportal.univie.ac.at/en/publications/b52b0047-b999-4818-b37f-3e3fcbf3d5dd