Candogan Yossef, Naze; 2024. Skill and value of global seasonal streamflow forecasts. , . [1] | 2024 | Model application | 0 |
Wang, Zhenwu; Hut, Rolf; Tangdamrongsub, Natthachet; Van De Giesen, Nick; 2021. Data assimilation of SMAP soil moisture into the PCR-GLOBWB hydrological model to improve discharge estimates via A Novel Local Particle Filter. , . [2] | 2021 | Model application | 0 |
Hoch, Jannis; Sutanudjaja, Edwin; Van Beek, Rens; Bierkens, Marc; 2021. On the influence and limitations of hyper-resolution hydrological modelling – application of the 1 km PCR-GLOBWB model over Europe. , . [3] | 2021 | Model application | 0 |
Hut, Rolf; Drost, Niels; Van De Giesen, Nick; Van Werkhoven, Ben; Abdollahi, Banafsheh; Aerts, Jerom; Albers, Thomas; Alidoost, Fakhereh; Andela, Bouwe; Camphuijsen, Jaro; Dzigan, Yifat; Van Haren, Ronald; Hutton, Eric; Kalverla, Peter; Van Meersbergen, Maarten; Van Den Oord, Gijs; Pelupessy, Inti; Smeets, Stef; Verhoeven, Stefan; De Vos, Martine; Weel, Berend; 2021. The eWaterCycle platform for Open and FAIR Hydrological collaboration. , . 10.5194/gmd-2021-344 | 2021 | Model application | 18 |
Hendriks, Dimmie; Hazenberg, Pieter; Gotte, Jonas; Trambauer, Patricia; Haag, Arjen; Donchyts, Gennadii; Sperna Weiland, Frederiek; 2021. Development of a Next Generation Drought Index: combining multiple global and local data sources to enable detection of sector-specific drought impacts. , . [4] | 2021 | Model application | 0 |
Wang, Z.; 2021. Data Assimilation in High Dimensional Systems Using Local Particle Filters: Overcoming the curse of dimensionality in hydrology. , . [5] | 2021 | Model application | 1 |
Wiersma, Pau; Hut, Rolf; Aerts, Jerom; Drost, Niels; Zekollari, Harry; Hrachowitz, Markus; 2021. Global glacio-hydrological model coupling for streamflow prediction. , . [6] | 2021 | Model application | 0 |
Samaniego, Luis; Thober, Stephan; Kelbling, Matthias; Schweppe, Robert; Rakovec, Oldrich; Shrestha, Pallav; Martinez-de La Torre, Alberto; Blyth, Eleanor M.; Smith, Katie A.; Rees, Gwyn; Fry, Matthew; Sutanudjaja, Edwin; Wanders, Niko; Bierkens, Marc Fp; Van Beek, Rens; 2021. ULYSSES: a system for global multi-model hydrological seasonal predictions. , . [7] | 2021 | Model application | 0 |
Ruijsch, Jessica; Sutanudjaja, Edwin; Verstegen, Judith; Karssenberg, Derek; 2020. Systemic Change in Hydrology: Spatio-temporal parameter variability of the PCR-GLOBWB hydrological model in the Rhine-Meuse basin. , . [8] | 2020 | Model application | 0 |
Sutanudjaja, Edwin; Gramsbergen, Egbert; Martinez Lavanchy, Paula; Van Der Kuil, Annemiek; Van Der Heul, Jan; Brunst, Vincent; Lange, Otto; Schmitz, Oliver; Wanders, Niko; 2020. OPeNDAP-based access for PCR-GLOBWB input files. , . [9] | 2020 | Model application | 0 |
Drost, Niels; Hut, Rolf; Van De Giesen, Nick; Van Werkhoven, Ben; Aerts, Jerom P.M.; Camphuijsen, Jaro; Pelupessy, Inti; Weel, Berend; Verhoeven, Stefan; Van Haren, Ronald; Hutton, Eric; Alidoost, Fakhereh; Van Den Oord, Gijs; Dzigan, Yifat; Andela, Bouwe; Kalverla, Peter; 2020. Coupling Hydrological models using BMI in eWaterCycle. , . [10] | 2020 | Model application | 0 |
Scanlon, Bridget; Rateb, Ashraf; Sun, Alexander; Save, Himanshu; 2020. Assessing Impacts of Climate Extremes and Human Water Use on GRACE Total Water Storage Trends in Major U.S. Aquifers. , . [11] | 2020 | Model application | 0 |
Thorslund, Josefin; Van Vliet, Michelle T.H.; 2020. Spatial and temporal patterns of freshwater salinity and impacts on irrigation water use constraints globally. , . [12] | 2020 | Model application | 0 |
Scussolini, Paolo; 2020. Global hydroclimate of the Last Interglacial: precipitation, river discharge, floods. , . [13] | 2020 | Model application | 0 |
Van Beek, L.P.H. (Rens); Sutanudjaja, Edwin H.; Hoch, Jannis M.; Bierkens, Marc F.P.; 2020. Implementing PCR-GLOBWB on a 1 km resolution for Africa. , . [14] | 2020 | Model application | 0 |
Hendriks, Dimmie; Vermooten, Sophie; Van Aalst, Maaike; Mulder, Niels; Morales Irato, Diana; Hüsken, Lieke; Faneca Sànchez, Marta; 2020. Combining global and local models and data for sector-specific water scarcity risk assessments in mega-cities. , . [15] | 2020 | Model application | 0 |
De Jong, Kor; Karssenberg, Derek; Panja, Deb; Van Kreveld, Marc; 2020. Towards a scalable framework for earth science simulation models, using asynchronous many-tasks. , . [16] | 2020 | Model application | 0 |
Sutanudjaja, Edwin; 2020. Modeling falling groundwater head declines in major cities of the world: current situation and future projection. , . [17] | 2020 | Model application | 1 |
Wanders, Niko; Von Uexkull, Nina; Buhaug, Halvard; Di Baldassarre, Giulianno; 2020. Unravelling the complex interplay between drought and conflict. , . [18] | 2020 | Model application | 0 |
Hoch, Jannis; Eilander, Dirk; Ikeuchi, Hiroaki; 2020. How model selection can determine flood risk estimates – a case study in the Ganges basin using the GLOFRIM framework. , . [19] | 2020 | Model application | 0 |
Hoch, Jannis M.; Eilander, Dirk; Ikeuchi, Hiroaki; Baart, Fedor; Winsemius, Hessel C.; 2019. Integrating large-scale hydrology and hydrodynamics for nested flood hazard modelling from the mountains to the coast. , . 10.5194/nhess-2019-75 | 2019 | Model application | 2 |
Wanders, Niko; Van der Wiel, Karin; 2019. Annual minima and maxima of present day and future discharge, derived from PCR-GLOBWB. , . 10.5281/ZENODO.2536395 | 2019 | Model application | 0 |
Gosling, Simon; Müller Schmied, Hannes; Betts, Richard; Chang, Jinfeng; Ciais, Philippe; Dankers, Rutger; Döll, Petra; Eisner, Stephanie; Flörke, Martina; Gerten, Dieter; Grillakis, Manolis; Hanasaki, Naota; Hagemann, Stefan; Huang, Maoyi; Huang, Zhongwei; Jerez, Sonia; Kim, Hyungjun; Koutroulis, Aristeidis; Leng, Guoyong; Liu, Xingcai; Masaki, Yoshimitsu; Montavez, Pedro; Morfopoulos, Catherine; Oki, Taikan; Papadimitriou, Lamprini; Pokhrel, Yadu; Portmann, Felix T.; Orth, Rene; Ostberg, Sebastian; Satoh, Yusuke; Seneviratne, Sonia; Sommer, Philipp; Stacke, Tobias; Tang, Qiuhong; Tsanis, Ioannis; Wada, Yoshihide; Zhou, Tian; Büchner, Matthias; Schewe, Jacob; Zhao, Fang; Gosling, Simon; 2017. ISIMIP2a Simulation Data from Water (global) Sector. , . 10.5880/PIK.2017.010 | 2017 | Model application | 27 |
Marx, Andreas; Kumar, Rohini; Thober, Stephan; Zink, Matthias; Wanders, Niko; Wood, Eric F.; Ming, Pan; Sheffield, Justin; Samaniego, Luis; 2017. Climate change alters low flows in Europe under a 1.5, 2, and 3 degree global warming. , . 10.5194/hess-2017-485 | 2017 | Model application | 27 |
Sutanudjaja, Edwin H.; Van Beek, Rens; Wanders, Niko; Wada, Yoshihide; Bosmans, Joyce H. C.; Drost, Niels; Van Der Ent, Ruud J.; De Graaf, Inge E. M.; Hoch, Jannis M.; De Jong, Kor; Karssenberg, Derek; López López, Patricia; Peßenteiner, Stefanie; Schmitz, Oliver; Straatsma, Menno W.; Vannametee, Ekkamol; Wisser, Dominik; Bierkens, Marc F. P.; 2017. PCR-GLOBWB 2: a 5 arc-minute global hydrological and water resources model. , . 10.5194/gmd-2017-288 | 2017 | Model application | 29 |
Velez-Reyes, Miguel; Messinger, David W.; Gomes, Rahul; Straub, Jeremy; 2017. Genetic algorithm for flood detection and evacuation route planning. , 1019816. 10.1117/12.2266474 | 2017 | Model application | 13 |
Sutanudjaja, Edwin; van Beek, Rens; Wada, Yoshihide; Bosmans, Joyce; Drost, Niels; de Graaf, Inge; de Jong, Kor; Lopez Lopez, Patricia; Pessenteiner, Stefanie; Schmitz, Oliver; Straatsma, Menno; Wanders, Niko; Wisser, Dominik; Bierkens, Marc; 2016. PCR-GLOBWB_model: PCR-GLOBWB version v2.1.0_alpha. , . [20] | 2016 | Model application | 1 |
Sperna Weiland, F. C.; Tisseuil, C.; Dürr, H. H.; Vrac, M.; Van Beek, L. P. H.; 2011. Selecting the optimal method to calculate daily global reference potential evaporation from CFSR reanalysis data. , . 10.5194/hessd-8-7355-2011 | 2011 | Model application | 5 |