460 research outputs found
Köppen Geiger climate type classifications, derived for the period 2000-2100
Annual Köppen Geiger climate classification for the period 2000-2100 derived from Global Circulation Models for Wanders, N., Wada, Y., & Van Lanen, H. A. J. (2015). Global hydrological droughts in the 21st century under a changing hydrological regime. Earth System Dynamics, 6(1), 1–15. http://doi.org/10.5194/esd-6-1-201
Köppen Geiger climate type classifications, derived for the period 2000-2100
Annual Köppen Geiger climate classification for the period 2000-2100 derived from Global Circulation Models for Wanders, N., Wada, Y., & Van Lanen, H. A. J. (2015). Global hydrological droughts in the 21st century under a changing hydrological regime. Earth System Dynamics, 6(1), 1–15. http://doi.org/10.5194/esd-6-1-201
Original data for study on Human water consumption intensifies hydrological drought worldwide
This is the original PCR-GLOBWB simulation data that was used to derive the results for the Human water consumption intensifies hydrological drought worldwide paper by Wada, van Beek, Wanders and Bierkens in Environmental Research Letters
Original data for study on Human water consumption intensifies hydrological drought worldwide
This is the original PCR-GLOBWB simulation data that was used to derive the results for the Human water consumption intensifies hydrological drought worldwide paper by Wada, van Beek, Wanders and Bierkens in Environmental Research Letters
Natural and human-influenced hydrological simulations for California
Natural and human-influenced hydrological simulations for California, derived from PCR-GLOBWB (including drought analysis). Data to support figure 1 in Wada, Y., Bierkens, M. F. P., de Roo, A., Dirmeyer, P. A., Famiglietti, J. S., Hanasaki, N., Konar, M., Liu, J., Müller Schmied, H., Oki, T., Pokhrel, Y., Sivapalan, M., Troy, T. J., van Dijk, A. I. J. M., van Emmerik, T., Van Huijgevoort, M. H. J., Van Lanen, H. A. J., Vörösmarty, C. J., Wanders, N., and Wheater, H.: Human-water interface in hydrological modeling: Current status and future directions, Hydrol. Earth Syst. Sci. Discuss., https://doi.org/10.5194/hess-2017-248, in review, 2017
Natural and human-influenced hydrological simulations for California
Natural and human-influenced hydrological simulations for California, derived from PCR-GLOBWB (including drought analysis). Data to support figure 1 in Wada, Y., Bierkens, M. F. P., de Roo, A., Dirmeyer, P. A., Famiglietti, J. S., Hanasaki, N., Konar, M., Liu, J., Müller Schmied, H., Oki, T., Pokhrel, Y., Sivapalan, M., Troy, T. J., van Dijk, A. I. J. M., van Emmerik, T., Van Huijgevoort, M. H. J., Van Lanen, H. A. J., Vörösmarty, C. J., Wanders, N., and Wheater, H.: Human-water interface in hydrological modeling: Current status and future directions, Hydrol. Earth Syst. Sci. Discuss., https://doi.org/10.5194/hess-2017-248, in review, 2017
World Water Map Data Package
This data package contains the data associated with the World Water Map project (worldwatermap.nationalgeographic.org). The World Water Map informs on the state of the worlds water resources between 1980 and 2019: storages and fluxes in the terrestrial water cycle, human impacts on the water cycle (i.e. demand, withdrawal and consumption) and, most importantly, the gap between renewable water availability and human water demands (i.e. the water gap). The data behind the World Water Map is based on the global hydrological model PCR-GLOBWB (globalhydrology.nl/research/models/pcr-globwb-2-0), which was developed at Utrecht University. This data package contains all the maps associated with the World Water Map. For more information, please contact Bram Droppers ([email protected]) or Niko Wanders ([email protected]).
For more information on the global hydrological model PCR-GLOBWB and its components: Sutanudjaja, E. H., Van Beek, R., Wanders, N., Wada, Y., Bosmans, J. H., Drost, N., van der Ent, R. J., de Graaf, I. E. M., Hoch, J. M., de Jong, K., Karssenberg, D., López, P. L., Peßenteiner, S., Schmitz, O., Straatsma, M. W., Vannametee, E., Wisser, D. & Bierkens, M. F. (2018). PCR-GLOBWB 2: a 5 arcmin global hydrological and water resources model. Geoscientific Model Development, 11(6), 2429-2453. doi.org/10.5194/gmd-11-2429-2018. The model code is publicly available at github.com/UU-Hydro/PCR-GLOBWB_model
Futurestreams dataset
Repository of discharge and water temperature scenarios derived from 5 CMIP5 GCMs from the ISI-MIP project computed by the global water balance model PCRGLOBWB and the global water temperature model DynWat.
Data are provided on a weekly temporal resolution and 10km spatial resolution. 4 Representative Concentration Pathways are presented, RCP2.6, RCP4.5, RCP6.0 and RCP8.5, up to 2099. The historical simulations are also provide for 1976 - 2005. A historical simulation derived from E2O reanalysis data is also provided.
Data access is currently restricted, and will become directly available once the accompanying Data Descriptor (currently under review) is published.
Contact persons are:
- Joyce Bosmans ([email protected])
- Niko Wanders ([email protected]
Modelled outputs for "A data derived workflow for reservoir operations (in global hydrologic models)" (Steyaert et al., 2025)
Contains storage fraction and discharge for all four of the simulations in the analysis of 'A data derived workflow for reservoir operations (in global hydrologic models)' (Steyaert et al., 2025). Each model scenario has its own folder that can be referenced based on Table 2 in the Steyaert et al., 2025. Model outputs are then divided into two folders: discharge and storage, which contain the necessary PCR-GLOBWB 2 variables used for this analysis. The maskGlobal.nc contains a netcdf that references the basin number ( denoted as 01 - 53) in the individual variable folders to the spatial region that it encompasses.
The data is provided in 5 subfolders. Detailed information about the files in these subfolders as well as information on how the data is processed is given in the explanatory file Readme_ReservoirData.rtf. For more information, please contact Jennie C. Steyaert ([email protected]) or Niko Wanders ([email protected])
Modelled outputs for " Data derived reservoir operations simulated in a global hydrologic model" (Steyaert et al., 2025)
Contains storage fraction and discharge for all five of the simulations in the analysis of ' Data derived reservoir operations simulated in a global hydrologic model' (Steyaert et al., 2025). Each of the five model scenarios has its own folder. The five main models in our analysis can be referenced based on Table 2 in Steyaert et al., 2025. The noCA model was an addition after revisions and therefore contains model runs using the Turner operational scheme and no downstream command area. Model outputs are then divided into two folders: discharge and storage, which contain the necessary PCR-GLOBWB 2 variables used for this analysis. The maskGlobal.nc contains a netcdf that references the basin number ( denoted as 01 - 53) in the individual variable folders to the spatial region that it encompasses.
The data is provided in 6 subfolders. Detailed information about the files in these subfolders as well as information on how the data is processed is given in the explanatory file Readme_ReservoirData.rtf. For more information, please contact Jennie C. Steyaert ([email protected]) or Niko Wanders ([email protected])
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