4.6 Article

Effects of catchment characteristics and hydro-meteorological scenarios on sediment connectivity in glacierised catchments

期刊

GEOMORPHOLOGY
卷 402, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.geomorph.2022.108128

关键词

Functional connectivity; Graph theory; Climate change; Geomorphic systems

资金

  1. German Academic Exchange Service (DAAD) [08/2017-10/2018]
  2. Autonomous Province of Bozen-Bolzano
  3. Open Access Publishing Fund of the Free University of Bozen-Bolzano

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This study evaluates the changes in sediment transport dynamics in a geomorphic system under the context of climate change, finding that the area connected to its outlet might feature a six-fold increase in sediment transport under rainstorm conditions. Different sub-catchments are expected to show varying effects of climate change on sediment connectivity.
In the past decade, sediment connectivity has become a widely recognized characteristic of a geomorphic system. However, the quantification of functional connectivity (i.e. connectivity which arises due to the actual occurrence of sediment transport processes) and its variation over space and time is still a challenge. In this context, this study assesses the effects of expected future phenomena in the context of climate change (i.e. glacier retreat, permafrost degradation or meteorological extreme events) on sediment transport dynamics in a glacierised Alpine basin. The study area is the Sulden river basin (drainage area 130 km(2)) in the Italian Alps, which is composed of two geomorphologically diverse sub-basins. Based on graph theory, we evaluated the spatio-temporal variations in functional connectivity in these two sub-basins. The graph-object, obtained by manually mapping sediment transport processes between landforms, was adapted to 6 different hydro-meteorological scenarios, which derive from combining base, heatwave and rainstorm conditions with snowmelt and glacier-melt periods. For each scenario and each sub-basin, the sediment transport network and related catchment characteristics were analysed. To compare the effects of the scenarios on functional connectivity, we introduced a connectivity degree, calculated based on the area of the landforms involved in sediment cascades. Results indicate that the area of the basin connected to its outlet in terms of sediment transport might feature a six-fold increase in case of rainstorm conditions compared to average meteorological conditions assumed for the base scenario. Furthermore, markedly different effects of climate change on sediment connectivity are expected between the two sub-catchments due to their contrasting morphological and lithological characteristics, in terms of relative importance of rainfall triggered colluvial processes vs temperature-driven proglacial fluvial dynamics. (c) 2022 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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