Graphical representation of global water models

Show simple item record

dc.contributor.author Schmied, Hannes Müller
dc.contributor.author Gosling, Simon Newland
dc.contributor.author Garnsworthy, Marlo
dc.contributor.author Müller, Laura
dc.contributor.author Telteu, Camelia-Eliza
dc.contributor.author Ahmed, Atiq Kainan
dc.contributor.author Andersen, Lauren Seaby
dc.contributor.author Boulange, Julien
dc.contributor.author Burek, Peter
dc.contributor.author Chang, Jinfeng
dc.contributor.author Chen, He
dc.contributor.author Gudmundsson, Lukas
dc.contributor.author Grillakis, Manolis
dc.contributor.author Guillaumot, Luca
dc.contributor.author Hanasaki, Naota
dc.contributor.author Koutroulis, Aristeidis
dc.contributor.author Kumar, Rohini
dc.contributor.author Leng, Guoyong
dc.contributor.author Liu, Junguo
dc.contributor.author Liu, Xingcai
dc.contributor.author Menke, Inga
dc.contributor.author Mishra, Vimal
dc.contributor.author Pokhrel, Yadu
dc.contributor.author Rakovec, Oldrich
dc.contributor.author Samaniego, Luis
dc.contributor.author Satoh, Yusuke
dc.contributor.author Shah, Harsh Lovekumar
dc.contributor.author Smilovic, Mikhail
dc.contributor.author Stacke, Tobias
dc.contributor.author Sutanudjaja, Edwin
dc.contributor.author Thiery, Wim
dc.contributor.author Tsilimigkras, Athanasios
dc.contributor.author Wada, Yoshihide
dc.contributor.author Wanders, Niko
dc.contributor.author Yokohata, Tokuta
dc.coverage.spatial Germany
dc.date.accessioned 2025-05-16T05:55:33Z
dc.date.available 2025-05-16T05:55:33Z
dc.date.issued 2025
dc.identifier.citation Schmied, Hannes Müller; Gosling, Simon Newland; Garnsworthy, Marlo; Müller, Laura; Telteu, Camelia-Eliza; Ahmed, Atiq Kainan; Andersen, Lauren Seaby; Boulange, Julien; Burek, Peter; Chang, Jinfeng; Chen, He; Gudmundsson, Lukas; Grillakis, Manolis; Guillaumot, Luca; Hanasaki, Naota; Koutroulis, Aristeidis; Kumar, Rohini; Leng, Guoyong; Liu, Junguo; Liu, Xingcai; Menke, Inga; Mishra, Vimal; Pokhrel, Yadu; Rakovec, Oldrich; Samaniego, Luis; Satoh, Yusuke; Shah, Harsh Lovekumar; Smilovic, Mikhail; Stacke, Tobias; Sutanudjaja, Edwin; Thiery, Wim; Tsilimigkras, Athanasios; Wada, Yoshihide; Wanders, Niko and Yokohata, Tokuta, "Graphical representation of global water models", Geoscientific Model Development, DOI: 10.5194/gmd-18-2409-2025, vol. 18, no. 08, pp. 2409-2425, 2025.
dc.identifier.isbn vol. 18, no. 08, pp. 2409-2425
dc.identifier.issn 1991-959X
dc.identifier.issn 1991-9603
dc.identifier.uri https://doi.org/10.5194/gmd-18-2409-2025
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/11417
dc.description.abstract Numerical models are simplified representations of the real world at a finite level of complexity. Global water models are used to simulate the terrestrial part of the global water cycle, and their outputs contribute to the evaluation of important natural and societal issues, including water availability, flood risk, and ecological functioning. Whilst global water modeling is an area of science that has developed over several decades, and individual model-specific descriptions exist for some models, there has to date been no attempt to visualize the ways that several models work, using a standardized visualization framework. Here, we address this gap by presenting a community-driven process that developed a framework to visualize several global water models. The models considered participate in the Inter-Sectoral Impact Model Intercomparison Project phase 2b (ISIMIP2b). The diagrams were co-produced between a graphics designer and 16 modeling teams, based on extensive discussions and pragmatic decision-making that balanced the need for accuracy and detail against the need for effective visualization. The model diagrams are based on a standardized ISIMIP2b-complete global water model that represents what is theoretically possible to represent in the current generation of state-of-the-art global water models participating in ISIMIP2b. Model-specific diagrams are then copies of the ISIMIP2b-complete model, with individual processes either included or grayed out. An open-source tool has been developed and published jointly with the diagrams, which allows someone to generate a diagram for their own global water model by adapting the diagrams presented here. As well as serving an educational purpose, we envisage that the diagrams will help researchers in and outside of the global water model community to select suitable model(s) for specific applications, stimulate a community learning process, and identify missing components to help direct future model developments.
dc.description.statementofresponsibility by Hannes Müller Schmied, Simon Newland Gosling, Marlo Garnsworthy, Laura Müller, Camelia-Eliza Telteu, Atiq Kainan Ahmed, Lauren Seaby Andersen, Julien Boulange, Peter Burek, Jinfeng Chang, He Chen, Lukas Gudmundsson, Manolis Grillakis, Luca Guillaumot, Naota Hanasaki, Aristeidis Koutroulis, Rohini Kumar, Guoyong Leng, Junguo Liu, Xingcai Liu, Inga Menke, Vimal Mishra, Yadu Pokhrel, Oldrich Rakovec, Luis Samaniego, Yusuke Satoh, Harsh Lovekumar Shah, Mikhail Smilovic, Tobias Stacke, Edwin Sutanudjaja, Wim Thiery, Athanasios Tsilimigkras, Yoshihide Wada, Niko Wanders and Tokuta Yokohata
dc.format.extent vol. 18, no. 08, pp. 2409-2425
dc.language.iso en_US
dc.publisher Copernicus Publications
dc.title Graphical representation of global water models
dc.type Article
dc.relation.journal Geoscientific Model Development


Files in this item

Files Size Format View

There are no files associated with this item.

This item appears in the following Collection(s)

Show simple item record

Search Digital Repository


Browse

My Account