Author:
Shahrood Abolfazl Jalali,Ahrari Amirhossein,Karjalainen Niina,Klöve Björn,Haghighi Ali Torabi
Abstract
AbstractThe Arctic region experiences significant annual hydrologic events, with the spring flood and ice break-up being the most prominent. River ice break-up, in particular, poses high socioeconomic and ecological expenses, including morphological changes and damage to riverine structures. This study aims to investigate the spatiotemporal patterns of river ice in the River Tornionjoki, including the timing of ice break-up at different latitudes. We utilized observation data and remote sensing techniques to track changes in ice patterns overtime on the River Tornionjoki. The study indicates that the ice break-up in the River Tornionjoki basin typically occurs during Apr-Jun based on the reach location in different latitudes; therefore, different stations behave according to their latitudinal location. We observed significant spatial variations in ice break-up timing across the basin, with an earlier break-up in the lower latitudes compared to the upper latitudes. The average ice break-up day in lower latitude stations ranges between 200–205, while in higher latitude stations the average ice break-up day ranges between 215–228.
Funder
Maa- ja Vesitekniikan Tuki Ry
OLVI-Säätiö
University of Oulu
Publisher
Springer Science and Business Media LLC
Reference75 articles.
1. Alijani, Z., Lindsay, J., Chabot, M., Rowlandson, T., & Berg, A. (2021). Sensitivity of C-Band SAR polarimetric variables to the directionality of surface roughness parameters. Remote Sensing, 13, 2210.
2. Andersson, N., Callaghan, T. V., & Karlsson, P. S. (1996). The Abisko scientific research station. Ecological Bulletins, 45, 11–5.
3. Beaton, A., Whaley, R., Corston, K., & Kenny, F. (2019). Identifying historic river ice breakup timing using MODIS and Google Earth Engine in support of operational flood monitoring in Northern Ontario. Remote Sensing of Environment, 224, 352–364.
4. Beltaos, S. (1990). Fracture and breakup of river ice cover. Canadian Journal of Civil Engineering, 17, 173–183.
5. Beltaos, S. (1997). Onset of river ice breakup. Cold Regions Science and Technology, 25, 183–196.