Alpine rivers have experienced considerable changes in channel morphology over the last century. Human disturbance and natural factors are the main drivers of changes in channel morphology that modify natural sediment and flow regimes at local, catchment and regional scale. River sediment loads are likely to increase due to increasing snow and glacier melt runoff, facilitated by climate changes. Additionally, channel erosion and depositional dynamics and patterns are influenced by sediment delivery from rock walls, hillslopes, and sediment in the forefields of retreating glaciers. Land cover changes may facilitate or obstruct runoff and soil degradation. In order to reliably assess the magnitudes of the channel changing processes and/or th...
Since the end of the Little Ice Age (~1850), the melting of glaciers in the Alps has led to the expo...
In the Swiss Alps, climatic changes have not only caused glacier retreat, but also likely increased ...
Debris-covered glaciers receive increasing attention during this period of sustained negative mass b...
Alpine rivers have experienced considerable changes in channel morphology over the last century. The...
Alpine rivers have experienced considerable changes in channel morphology over the last century. Nat...
Since the end of the Little Ice Age (LIA), formerly glaciated areas have undergone considerable chan...
Alpine glacial environments and their fluvial systems are among those landscapes most comprehensivel...
The present study explores the evolutionary trajectory of the glacier-fed Mareit River (South Tyrol,...
The rapid glacier recession in the European Alps exposes high amounts of unconsolidated sediment, es...
The science on high-mountain proglacial systems is a rather young field of study, but has gained imp...
This work investigates the channel changes of Alpine rivers from the end of the Little Ice Age (1850...
Rock glaciers are cryo-conditioned downslope-creeping landforms in high mountains. Their dynamics ar...
With progressing glacier melting since the end of the Little Ice Age (LIA), lateral moraines have be...
High mountain environments have shown substantial geomorphological changes forced by rising temperat...
River channel management within the last centuries has largely modified fluvial processes and morpho...
Since the end of the Little Ice Age (~1850), the melting of glaciers in the Alps has led to the expo...
In the Swiss Alps, climatic changes have not only caused glacier retreat, but also likely increased ...
Debris-covered glaciers receive increasing attention during this period of sustained negative mass b...
Alpine rivers have experienced considerable changes in channel morphology over the last century. The...
Alpine rivers have experienced considerable changes in channel morphology over the last century. Nat...
Since the end of the Little Ice Age (LIA), formerly glaciated areas have undergone considerable chan...
Alpine glacial environments and their fluvial systems are among those landscapes most comprehensivel...
The present study explores the evolutionary trajectory of the glacier-fed Mareit River (South Tyrol,...
The rapid glacier recession in the European Alps exposes high amounts of unconsolidated sediment, es...
The science on high-mountain proglacial systems is a rather young field of study, but has gained imp...
This work investigates the channel changes of Alpine rivers from the end of the Little Ice Age (1850...
Rock glaciers are cryo-conditioned downslope-creeping landforms in high mountains. Their dynamics ar...
With progressing glacier melting since the end of the Little Ice Age (LIA), lateral moraines have be...
High mountain environments have shown substantial geomorphological changes forced by rising temperat...
River channel management within the last centuries has largely modified fluvial processes and morpho...
Since the end of the Little Ice Age (~1850), the melting of glaciers in the Alps has led to the expo...
In the Swiss Alps, climatic changes have not only caused glacier retreat, but also likely increased ...
Debris-covered glaciers receive increasing attention during this period of sustained negative mass b...