Global warming is expected to intensify the Earth's hydrological cycle and increase flood and drought risks. Changes over the 21st century under two warming scenarios in different percentiles of the probability distribution of streamflow, and particularly of high and low streamflow extremes (95th and 5th percentiles), are analyzed using an ensemble of bias-corrected global climate model (GCM) fields fed into different global hydrological models (GHMs) provided by the Inter-Sectoral Impact Model Intercomparison Project (ISI-MIP) to understand the changes in streamflow distribution and simultaneous vulnerability to different types of hydrological risk in different regions. In the multi-model mean under the Representative Concentrati...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
Projections of changes in the hydrological cycle from global hydrological models (GHMs) driven by gl...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Hydrological drought characteristics (drought in groundwater and streamflow) likely will change in ...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
This study makes a thorough global assessment of the effects of climate change on hydrological regi...
Results from 10 global climate change models are synthesized to investigate changes in extremes, def...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
Projections of changes in the hydrological cycle from global hydrological models (GHMs) driven by gl...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Climate change due to anthropogenic greenhouse gas emissions is expected to increase the frequency a...
Hydrological drought characteristics (drought in groundwater and streamflow) likely will change in ...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
This study makes a thorough global assessment of the effects of climate change on hydrological regi...
Results from 10 global climate change models are synthesized to investigate changes in extremes, def...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...
International audienceTo improve the understanding of trends in extreme flows related to flood event...