Climate change and human activities have consequences on coastal areas as they affect hydrological processes in the related river basins. The riverine sediment supply to the beaches of the Emilia-Romagna coast, a highly urbanized area with high economic and naturalistic value, has been heavily impacted by human activities throughout the catchment, reducing solid transport to the coast and increasing the threat of coastal erosion and flooding. Despite the introduction of safeguard policies in the early 1980s and the consequent stoppage of such activities, the expected return in solid transport has not yet been reflected at the coast. To better understand the various processes acting at the river basin scale, we utilized empirical mode decomp...
As a consequence of climate change and land subsidence, coastal zones are directly impacted by sea-l...
As highlighted by several studies, many Italian rivers have been affected at least since the mid-195...
Grottoli, E.; Cilli, S.; Ciavola, P., and Armaroli, C., 2020. Sedimentation at river mouths bounded ...
Climate change and human activities have consequences on coastal areas as they affect hydrological p...
Climate and anthropogenic activities play an important role in streamflow regime variations, but an...
River flow time series are far from being stationary and always experienced changes in the past, al...
Anthropogenic activities, and in particular land use/land cover (LULC) changes, have a considerable...
Morphological variations of coastlines are caused by several key processes that are influenced by cl...
River flow time series are far from being stationary and always experienced changes in the past, als...
Abstract In this study, sedimentological and geochronological data from sections of a...
We analysed the millennial-scale evolution of the alluvial systems of the Po and Adige rivers aroun...
Land-ocean coupling was investigated for the Adige River-Adriatic Shelf system by analyzing precipit...
Scientists and public administrators are devoting increasing attention to the Po River, in Italy, in...
An integrated analysis of recent climate change (including atmosphere, sea and land), and social rea...
The purpose of this study is to investigate environmental changes occurred in the last forty years, ...
As a consequence of climate change and land subsidence, coastal zones are directly impacted by sea-l...
As highlighted by several studies, many Italian rivers have been affected at least since the mid-195...
Grottoli, E.; Cilli, S.; Ciavola, P., and Armaroli, C., 2020. Sedimentation at river mouths bounded ...
Climate change and human activities have consequences on coastal areas as they affect hydrological p...
Climate and anthropogenic activities play an important role in streamflow regime variations, but an...
River flow time series are far from being stationary and always experienced changes in the past, al...
Anthropogenic activities, and in particular land use/land cover (LULC) changes, have a considerable...
Morphological variations of coastlines are caused by several key processes that are influenced by cl...
River flow time series are far from being stationary and always experienced changes in the past, als...
Abstract In this study, sedimentological and geochronological data from sections of a...
We analysed the millennial-scale evolution of the alluvial systems of the Po and Adige rivers aroun...
Land-ocean coupling was investigated for the Adige River-Adriatic Shelf system by analyzing precipit...
Scientists and public administrators are devoting increasing attention to the Po River, in Italy, in...
An integrated analysis of recent climate change (including atmosphere, sea and land), and social rea...
The purpose of this study is to investigate environmental changes occurred in the last forty years, ...
As a consequence of climate change and land subsidence, coastal zones are directly impacted by sea-l...
As highlighted by several studies, many Italian rivers have been affected at least since the mid-195...
Grottoli, E.; Cilli, S.; Ciavola, P., and Armaroli, C., 2020. Sedimentation at river mouths bounded ...