The future hydrological response of a river system is often predicted using hydrological models that are calibrated on past observations. By using static model parameters it is assumed that hydrological systems do not change in time. For long-term predictions, this is in clear contrast with the notion that vegetation actively adapts its root-system. Moreover, it neglects the possible impact that climate change might have on vegetation species and land-use. The root-zone storage capacity (Sr) is a key component in hydrological models as it has a critical function in the partitioning of water fluxes. This research (1) proposes a regression relationship using climate analogy to estimate the time-dynamic root-zone storage capacity for the Meuse...
The root zone storage capacity (Sr) is the maximum volume of water in the subsurface that can potent...
International audienceClimate warming and evolution water demand for anthropogenic activities are tw...
The Meuse is an important rain-fed river in North-Western Europe. Nine million people live in its ca...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
The Meuse river basin covers an area of 33,000 km2, touches five countries and is a major communicat...
Hydrological models are often used to evaluate future changes in streamflow. Despite the strong awar...
Contemplating the Meuse or any other river of the world, one may wonder about the journey of rain in...
Contemplating the Meuse or any other river of the world, one may wonder about the journey of rain in...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The root zone storage capacity (Sr) is the maximum volume of water in the subsurface that can potent...
The root zone storage capacity (Sr) is the maximum volume of water in the subsurface that can potent...
International audienceClimate warming and evolution water demand for anthropogenic activities are tw...
The Meuse is an important rain-fed river in North-Western Europe. Nine million people live in its ca...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
Future hydrological behavior in a changing world is typically predicted based on models that are cal...
The Meuse river basin covers an area of 33,000 km2, touches five countries and is a major communicat...
Hydrological models are often used to evaluate future changes in streamflow. Despite the strong awar...
Contemplating the Meuse or any other river of the world, one may wonder about the journey of rain in...
Contemplating the Meuse or any other river of the world, one may wonder about the journey of rain in...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The core component of many hydrological systems, the moisture storage capacity available to vegetati...
The root zone storage capacity (Sr) is the maximum volume of water in the subsurface that can potent...
The root zone storage capacity (Sr) is the maximum volume of water in the subsurface that can potent...
International audienceClimate warming and evolution water demand for anthropogenic activities are tw...
The Meuse is an important rain-fed river in North-Western Europe. Nine million people live in its ca...