Publications
Primary model references
- The Global Hydrological Model PCR-GLOBWB: Conceptualization, Parameterization and Verification (van Beek et al., 20091)
- PCR-GLOBWB 2: a 5 arcmin global hydrological and water resources model (Sutanudjaja et al., 20182)
Module-specific references
- A physically based model of global freshwater surface temperature (van Beek et al., 20123)
- A high-resolution global-scale groundwater model (de Graaf et al., 20154)
- A global-scale two-layer transient groundwater model: Development and application to groundwater depletion (de Graaf et al., 20175)
- DynQual v1. 0: A high-resolution global surface water quality model (Jones et al., 20226)
Model application references
- Global monthly water stress: 1. Water balance and water availability (van Beek et al., 20117)
- Global monthly water stress: 2. Water demand and severity of water stress (Wada et al., 20118)
- Global modeling of withdrawal, allocation and consumptive use of surface water and groundwater resources (Wada et al., 20149)
- Dynamic attribution of global water demand to surface water and groundwater resources: Effects of abstractions and return flows on river discharges (de Graaf et al., 201410)
- Hyper-resolution PCR-GLOBWB: opportunities and challenges from refining model spatial resolution to 1 km over the European continent (Hoch et al., 202311)
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Rens LPH Beek and Marc FP Bierkens. The global hydrological model pcr-globwb: conceptualization, parameterization and verification. Technical Report, Utrecht University, 2009. URL: http://vanbeek.geo.uu.nl/suppinfo/vanbeekbierkens2009.pdf. ↩
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Edwin H Sutanudjaja, Rens Van Beek, Niko Wanders, Yoshihide Wada, Joyce HC Bosmans, Niels Drost, Ruud J Van Der Ent, Inge EM De Graaf, Jannis M Hoch, Kor De Jong, Derek Karssenberg, López L Patricia, Stefanie Peßenteiner, Oliver Schmitz, Menno W Straatsma, Ekkamol Vannametee, Dominik Wisser, and Marc FP Bierkens. Pcr-globwb 2: a 5 arcmin global hydrological and water resources model. Geoscientific Model Development, 11(6):2429–2453, 2018. doi:10.5194/gmd-11-2429-2018. ↩
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Ludovicus PH van Beek, Tessa Eikelboom, Michelle TH van Vliet, and Marc FP Bierkens. A physically based model of global freshwater surface temperature. Water Resources Research, 2012. doi:10.1029/2012WR011819. ↩
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IEM de de Graaf, EH Sutanudjaja, LPH Van Beek, and MFP Bierkens. A high-resolution global-scale groundwater model. Hydrology and Earth System Sciences, 19(2):823–837, 2015. doi:10.5194/hess-19-823-2015. ↩
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Inge EM de Graaf, Rens LPH van Beek, Tom Gleeson, Nils Moosdorf, Oliver Schmitz, Edwin H Sutanudjaja, and Marc FP Bierkens. A global-scale two-layer transient groundwater model: development and application to groundwater depletion. Advances in water Resources, 102:53–67, 2017. doi:10.1016/j.advwatres.2017.01.011. ↩
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Edward R Jones, Marc FP Bierkens, Niko Wanders, Edwin H Sutanudjaja, Ludovicus PH van Beek, and Michelle TH van Vliet. Dynqual v1. 0: a high-resolution global surface water quality model. Geoscientific Model Development Discussions, pages 1–24, 2022. doi:10.5194/gmd-2022-222. ↩
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LPH Van Beek, Yoshihide Wada, and Marc FP Bierkens. Global monthly water stress: 1. water balance and water availability. Water Resources Research, 2011. doi:doi.org/10.1029/2010WR009791. ↩
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Yoshihide Wada, LPH Van Beek, Daniel Viviroli, Hans H Dürr, Rolf Weingartner, and Marc FP Bierkens. Global monthly water stress: 2. water demand and severity of water stress. Water Resources Research, 2011. doi:doi.org/10.1029/2010WR009792. ↩
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Yoshihide Wada, Dominik Wisser, and Marc FP Bierkens. Global modeling of withdrawal, allocation and consumptive use of surface water and groundwater resources. Earth System Dynamics, 5(1):15–40, 2014. doi:10.5194/esd-5-15-2014. ↩
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IEM De Graaf, LPH Van Beek, Yoshi Wada, and MFP Bierkens. Dynamic attribution of global water demand to surface water and groundwater resources: effects of abstractions and return flows on river discharges. Advances in water resources, 64:21–33, 2014. doi:10.1016/j.advwatres.2013.12.002. ↩
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Jannis M Hoch, Edwin H Sutanudjaja, Niko Wanders, Rens LPH van Beek, and Marc FP Bierkens. Hyper-resolution pcr-globwb: opportunities and challenges from refining model spatial resolution to 1 km over the european continent. Hydrology and Earth System Sciences, 27(6):1383–1401, 2023. doi:10.5194/hess-27-1383-2023. ↩