Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment

Hirschberg J, Fatichi S, Bennett GL, McArdell BW, Peleg N, Lane SN, Schlunegger F, Molnar P. 2021. Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment. Journal of Geophysical Research: Earth Surface. 126(1), e2020JF005739.

Download (ext.)

Journal Article | Published | English

Scopus indexed
Author
Hirschberg, Jacob; Fatichi, SimoneISTA; Bennett, Georgina L.; McArdell, Brian W.; Peleg, Nadav; Lane, Stuart N.; Schlunegger, Fritz; Molnar, Peter
Abstract
Climate change impacts on sediment production and transfer processes on hillslopes and through channels are governed by possible changes in precipitation, runoff, and air temperature. These hydrological and geomorphological impacts are difficult to predict in temperature‐sensitive Alpine environments. In this study, we combined a stochastic weather generator model with the most current climate change projections to feed a hillslope‐channel sediment cascade model for a major debris‐flow system in the Swiss Alps (the Illgraben). This allowed us to quantify climate change impacts and their uncertainties on sediment yield and the number of debris flows at hourly temporal resolution. We show that projected changes in precipitation and air temperature lead to a reduction in both sediment yield (−48%) and debris‐flow occurrence (−23%). This change is caused by a decrease in sediment supply from hillslopes, which is driven by frost‐weathering. Additionally, we conduct model experiments that show the sensitivity of projected changes in sediment yield and debris‐flow hazard to basin elevation, with important implications for assessing natural hazards and risks in mountain environments. Future changes in hydrological and sediment fluxes are characterized by high uncertainty, mainly due to irreducible internal climate variability. Therefore, this stochastic uncertainty needs to be considered in climate change impact assessments for geomorphic systems.
Publishing Year
Date Published
2021-01-01
Journal Title
Journal of Geophysical Research: Earth Surface
Publisher
American Geophysical Union
Volume
126
Issue
1
Article Number
e2020JF005739
ISSN
eISSN
IST-REx-ID

Cite this

Hirschberg J, Fatichi S, Bennett GL, et al. Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment. Journal of Geophysical Research: Earth Surface. 2021;126(1). doi:10.1029/2020jf005739
Hirschberg, J., Fatichi, S., Bennett, G. L., McArdell, B. W., Peleg, N., Lane, S. N., … Molnar, P. (2021). Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment. Journal of Geophysical Research: Earth Surface. American Geophysical Union. https://doi.org/10.1029/2020jf005739
Hirschberg, Jacob, Simone Fatichi, Georgina L. Bennett, Brian W. McArdell, Nadav Peleg, Stuart N. Lane, Fritz Schlunegger, and Peter Molnar. “Climate Change Impacts on Sediment Yield and Debris‐flow Activity in an Alpine Catchment.” Journal of Geophysical Research: Earth Surface. American Geophysical Union, 2021. https://doi.org/10.1029/2020jf005739.
J. Hirschberg et al., “Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment,” Journal of Geophysical Research: Earth Surface, vol. 126, no. 1. American Geophysical Union, 2021.
Hirschberg J, Fatichi S, Bennett GL, McArdell BW, Peleg N, Lane SN, Schlunegger F, Molnar P. 2021. Climate change impacts on sediment yield and debris‐flow activity in an alpine catchment. Journal of Geophysical Research: Earth Surface. 126(1), e2020JF005739.
Hirschberg, Jacob, et al. “Climate Change Impacts on Sediment Yield and Debris‐flow Activity in an Alpine Catchment.” Journal of Geophysical Research: Earth Surface, vol. 126, no. 1, e2020JF005739, American Geophysical Union, 2021, doi:10.1029/2020jf005739.
All files available under the following license(s):
Copyright Statement:
This Item is protected by copyright and/or related rights. [...]

Link(s) to Main File(s)
Access Level
OA Open Access

Export

Marked Publications

Metadata Export

Search this title in

Google Scholar