We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous versions of PCR-GLOBWB, this version fully integrates water use. Sector-specific water demand, groundwater and surface water withdrawal, water consumption, and return flows are dynamically calculated at every time step and interact directly with the simulated hydrology. PCR-GLOBWB 2 has been fully rewritten in Python and PCRaster Python and has a modular structure, allowing easier replacement, maintenance, and development of model components. PCR-GLOBWB 2 has been implemented at 5 arcmin resolution, but a version parameterized at 30 arcmin resolution is also available. Both versions are available as open-source codes on https://github.com/UU-Hydro/PC...
Groundwater is the world's largest accessible source of fresh water. It plays a vital role in satisf...
Questions related to historical and future water resources and scarcity have been addressed by sever...
A number of global hydrological models [GHMs) have been developed in recent decades in order to unde...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous versions...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous versions...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous version...
Global extent input files at 5 arc-minute resolution and 30 arc-minute resolution for PCR-GLOBWB 2 (...
Accurate information about water reserves is crucial in a world where the water demand will increase...
Contains fulltext : 202000.pdf (publisher's version ) (Open Access
The folder "pcrglobwb2_input" contains global-extent input files, e.g. meteorological forcing data a...
PCR-GLOBWB (PCRaster Global Water Balance) is a large-scale hydrological model intended for global t...
PCR-GLOBWB (PCRaster Global Water Balance) is a large-scale hydrological model intended for global t...
Freshwater shortage already affects large parts of the world, and is expected to increase rapidly ov...
This study used a global hydrological model (GHM), PCR-GLOBWB, which simulates surface water storage...
Surface fresh water (i.e., blue water) is a vital and indispensable resource for human water use in ...
Groundwater is the world's largest accessible source of fresh water. It plays a vital role in satisf...
Questions related to historical and future water resources and scarcity have been addressed by sever...
A number of global hydrological models [GHMs) have been developed in recent decades in order to unde...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous versions...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous versions...
We present PCR-GLOBWB 2, a global hydrology and water resources model. Compared to previous version...
Global extent input files at 5 arc-minute resolution and 30 arc-minute resolution for PCR-GLOBWB 2 (...
Accurate information about water reserves is crucial in a world where the water demand will increase...
Contains fulltext : 202000.pdf (publisher's version ) (Open Access
The folder "pcrglobwb2_input" contains global-extent input files, e.g. meteorological forcing data a...
PCR-GLOBWB (PCRaster Global Water Balance) is a large-scale hydrological model intended for global t...
PCR-GLOBWB (PCRaster Global Water Balance) is a large-scale hydrological model intended for global t...
Freshwater shortage already affects large parts of the world, and is expected to increase rapidly ov...
This study used a global hydrological model (GHM), PCR-GLOBWB, which simulates surface water storage...
Surface fresh water (i.e., blue water) is a vital and indispensable resource for human water use in ...
Groundwater is the world's largest accessible source of fresh water. It plays a vital role in satisf...
Questions related to historical and future water resources and scarcity have been addressed by sever...
A number of global hydrological models [GHMs) have been developed in recent decades in order to unde...