To understand changes in global mean and extreme streamflow volumes over recent decades, we statistically analyzed runoff and streamflow simulated by the WBM-plus hydrological model using either observational-based meteorological inputs from WATCH Forcing Data (WFD), or bias-corrected inputs from five global climate models (GCMs) provided by the Inter-Sectoral Impact Model Intercomparison Project (ISI-MIP). Results show that the bias-corrected GCM inputs yield very good agreement with the observation-based inputs in average magnitude of runoff and streamflow. On global average, the observation-based simulated mean runoff and streamflow both decreased about 1.3% from 1971 to 2001. However, GCM-based simulations yield increasing trends over t...
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...
Precipitation events are expected to become substantially more intense under global warming, but few...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
Published online 23 JAN 2019This study investigates global changes in indicators of mean and extreme...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
© Author(s) 2020. To improve the understanding of trends in extreme flows related to flood events at...
Global warming is expected to intensify the Earth's hydrological cycle and increase flood and droug...
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...
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...
Precipitation events are expected to become substantially more intense under global warming, but few...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
To understand changes in global mean and extreme streamflow volumes over recent decades, we statisti...
Published online 23 JAN 2019This study investigates global changes in indicators of mean and extreme...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
To improve the understanding of trends in extreme flows related to flood events at the global scale,...
© Author(s) 2020. To improve the understanding of trends in extreme flows related to flood events at...
Global warming is expected to intensify the Earth's hydrological cycle and increase flood and droug...
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...
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...
Precipitation events are expected to become substantially more intense under global warming, but few...