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Publication Additional Information Download
Publication Type
Journal Article
Authorship
Wada, Y., Bierkens, M.F.P., de Roo, A., Dirmeyer, P.A., Famiglietti, J.S., Hanasak, N., Konar, M., Liu , J., Schmied, H.M., 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.
Title
Human–water interface in hydrological modelling: current status and future directions
Year
2017
Publication Outlet
Hydrol. Earth Syst. Sci., 21, 4169–4193, 2017 https://doi.org/10.5194/hess-21-4169-2017
DOI
https://doi.org/10.5194/hess-21-4169-2017
Citation
Wada, Y., Bierkens, M.F.P., de Roo, A., Dirmeyer, P.A., Famiglietti, J.S., Hanasak, N., Konar, M., Liu , J., Schmied, H.M., 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. 2017 Human–water interface in hydrological modelling: current status and future directions. Hydrol. Earth Syst. Sci., 21, 4169–4193, 2017 https://doi.org/10.5194/hess-21-4169-2017
Abstract
Over recent decades, the global population has been rapidly increasing and human activities have altered terrestrial water fluxes to an unprecedented extent. The phenomenal growth of the human footprint has significantly modified hydrological processes in various ways (e.g. irrigation, artificial dams, and water diversion) and at various scales (from a watershed to the globe). During the early 1990s, awareness of the potential for increased water scarcity led to the first detailed global water resource assessments. Shortly thereafter, in order to analyse the human perturbation on terrestrial water resources, the first generation of large-scale hydrological models (LHMs) was produced. However, at this early stage few models considered the interaction between terrestrial water fluxes and human activities, including water use and reservoir regulation, and even fewer models distinguished water use from surface water and groundwater resources. Since the early 2000s, a growing number of LHMs have incorporated human impacts on the hydrological cycle, yet the representation of human activities in hydrological models remains challenging. In this paper we provide a synthesis of progress in the development and application of human impact modelling in LHMs. We highlight a number of key challenges and discuss possible improvements in order to better represent the human–water interface in hydrological models.
Program Affiliations
CCRN: Changing Cold Regions Network
GWF: Global Water Futures
Project Affiliations
GWF-AWF: Agricultural Water Futures
Publication Stage
Published
Additional Information
Changing Cold Regions Networks (CCRN
Download Links
https://doi.org/10.5194/hess-21-4169-2017
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