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Changes to flood peaks of a mountain river: implications for analysis of the 2013 flood in the Upper Bow River, Canada

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Type de ressource
Article de revue
Auteurs/contributeurs
  • Whitfield, Paul H. (Auteur)
  • Pomeroy, John W. (Auteur)
Titre
Changes to flood peaks of a mountain river: implications for analysis of the 2013 flood in the Upper Bow River, Canada
Résumé
The mountain headwater Bow River at Banff, Alberta, Canada was subject to a large flood in June 2013, over which considerable debate has ensued regarding its probability of occurrence. It is therefore instructive to consider what information long term streamflow discharge records provide about environmental change in the Upper Bow River basin above Banff. Though protected as part of Banff National Park, since 1885, the basin has experienced considerable climate and land cover changes, each of which has the potential to impact observations, and hence the interpretations of flood probability. The Bow River at Banff hydrometric station is one of Canada's longest operating reference hydrological basin network stations and so has great value for assessing changes in flow regime over time. Furthermore, the station measures a river that provides an extremely important water supply for Calgary and irrigation district downstream and so is of great interest for assessing regional water security. These records were examined for changes in several flood attributes and to determine whether flow changes may have been related to landscape change within the basin as caused by forest fires, conversion from grasslands to forest with fire suppression, and regional climate variations and/or trends. Floods in the Upper Bow River are generated by both snowmelt and rain-on-snow (ROS) events, the latter type which include floods events generated by spatially and temporally large storms such as occurred in 2013. The two types of floods also have different frequency characteristics. Snowmelt and ROS flood attributes were not correlated significantly with any climate index or with burned area except that snowmelt event duration correlated negatively to the Pacific Decadal Oscillation. While there is a significant negative trend in all floods over the past 100years, when separated based on generating process, neither snowmelt floods nor large ROS floods associated with mesoscale storms show any trends over time. Despite extensive changes to the landscape of the basin and in within the climate system, the flood regime remains unchanged, something identified at smaller scales in the region but never at larger scales.
Publication
Hydrological Processes
Volume
30
Numéro
25
Date
2016-12-15
DOI
10.1002/hyp.10957
Extra
DOI: 10.1002/hyp.10957 MAG ID: 2519898953
Référence
Whitfield, P. H., & Pomeroy, J. W. (2016). Changes to flood peaks of a mountain river: implications for analysis of the 2013 flood in the Upper Bow River, Canada. Hydrological Processes, 30(25). https://doi.org/10.1002/hyp.10957
Lieux
  • Canada (hors-Québec)
Types d'événements extrêmes
  • Inondations et crues
Types d'inondations
  • Fluviales
Lien vers cette notice
https://bibliographies.uqam.ca/riisq/bibliographie/G9B8ISU4
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