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Tethys – A Python Package for Spatial and Temporal Downscaling of Global Water Withdrawals Cover

Tethys – A Python Package for Spatial and Temporal Downscaling of Global Water Withdrawals

Open Access
|Feb 2018

References

  1. Li, X, Vernon, C R, Hejazi, M I, Link, R P, Feng, L, Liu, Y and Rauchenstein, L T 2017 Xanthos – A Global Hydrologic Model. Journal of Open Research Software, 5(1): 21. DOI: 10.5334/jors.181
  2. Edmonds, J and Reilly, J M 1985 Global Energy: Assessing the Future, 317. Oxford University Press, New York.
  3. Edmonds, J, Wise, M, Pitcher, H, Richels, R, Wigley, T and Maccracken, C 1997 An integrated assessment of climate change and the accelerated introduction of advanced energy technologies-an application of MiniCAM 1.0. Mitigation and adaptation strategies for global change, 1(4): 311339. DOI: 10.1023/B:MITI.0000027386.34214.60
  4. Hejazi, M I, Edmonds, J, Clarke, L, Kyle, P, Davies, E, Chaturvedi, V, Wise, M, Patel, P, Eom, J and Calvin, K 2014 Integrated assessment of global water scarcity over the 21st century under multiple climate change mitigation policies. Hydrology and Earth System Sciences, 18: 28592883. DOI: 10.5194/hess-18-2859-2014
  5. Huang, Z, Hejazi, M, Li, X, Tang, Q, Leng, G, Liu, Y, Döll, P, Eisner, S, Gerten, D, Hanasaki, N and Wada, Y 2017 Reconstruction of global gridded monthly sectoral water withdrawals for 1971–2010 and analysis of their spatiotemporal patterns. Hydrology and Earth System Sciences Discussions. DOI: 10.5194/hess-2017-551
  6. Wada, Y, Van Beek, L P H, Viviroli, D, Dürr, H H, Weingartner, R and Bierkens, M F 2011 Global monthly water stress: 2. Water withdrawal and severity of water stress. Water Resources Research, 47(7): W07518. DOI: 10.1029/2010WR009792
  7. Siebert, S, Döll, P, Feick, S, Hoogeveen, J and Frenken, K 2007 Global map of irrigation areas version 4.0.1. Johann Wolfgang Goethe University, Frankfurt am Main, Germany/Food and Agriculture Organization of the United Nations, Rome, Italy.
  8. Portmann, F T, Siebert, S, Bauer, C and Döll, P 2008 Global dataset of monthly growing areas of 26 irrigated crops: Version 1.0. University of Frankfurt, Germany.
  9. Klein Goldewijk, K, Beusen, A, Van Drecht, G and De Vos, M 2011 The HYDE 3.1 spatially explicit database of human induced global land use change over the past 12,000 years. Global Ecology and Biogeography, 20(1): 7386. DOI: 10.1111/j.1466-8238.2010.00587.x
  10. Center for International Earth Science Information Network (CIESIN) – Columbia University 2016 Gridded Population of the World, Version 4 (GPWv4): Population Count. NASA Socioeconomic Data and Applications Center (SEDAC), Palisades, NY. DOI: 10.7927/H4X63JVC
  11. Siebert, S, Henrich, V, Frenken, K and Burke, J 2013 Global Map of Irrigation Areas version 5. Rheinische Friedrich-Wilhelms-University, Bonn, Germany/Food and Agriculture Organization of the United Nations, Rome, Italy.
  12. Wint, W and Robinson, T 2007 Gridded livestock of the world. Food and Agriculture Organization (FAO), report 131. Rome.
  13. Alcamo, J and Henrichs, T 2002 Critical regions: A model-based estimation of world water resources sensitive to global changes. Aquatic Sciences-Research Across Boundaries, 64(4): 352362. DOI: 10.1007/PL00012591
  14. Flörke, M and Alcamo, J 2004 European outlook on water use. Center for Environmental Systems Research, University of Kassel, Final Report. EEA/RNC/03/007, 83.
  15. Hanasaki, N, Kanae, S, Oki, T, Masuda, K, Motoya, K, Shirakawa, N, Shen, Y and Tanaka, K 2008 An integrated model for the assessment of global water resources–Part 1: Model description and input meteorological forcing. Hydrology and Earth System Sciences, 12(4): 10071025. DOI: 10.5194/hess-12-1007-2008
  16. Hanasaki, N, Kanae, S, Oki, T, Masuda, K, Motoya, K, Shirakawa, N, Shen, Y and Tanaka, K 2008 An integrated model for the assessment of global water resources–Part 2: Applications and assessments. Hydrology and Earth System Sciences, 12(4): 10271037. DOI: 10.5194/hess-12-1027-2008
  17. Rost, S, Gerten, D, Bondeau, A, Lucht, W, Rohwer, J and Schaphoff, S 2008 Agricultural green and blue water consumption and its influence on the global water system. Water Resources Research, 44(9): W09405. DOI: 10.1029/2007WR006331
  18. Van Beek, L P H, Wada, Y and Bierkens, M F 2011 Global monthly water stress: 1. Water balance and water availability. Water Resources Research, 47(7): W07517. DOI: 10.1029/2010WR009791
  19. Voisin, N, Liu, L, Hejazi, M, Tesfa, T, Li, H, Huang, M, Liu, Y and Leung, L R 2013 One-way coupling of an integrated assessment model and a water resources model: Evaluation and implications of future changes over the US Midwest. Hydrology and Earth System Sciences, 17(11): 45554575. DOI: 10.5194/hess-17-4555-2013
  20. Hejazi, M I, Voisin, N, Liu, L, Bramer, L M, Fortin, D C, Hathaway, J E, Huang, M, Kyle, P, Leung, L R, Li, H Y and Liu, Y 2015 21st century United States emissions mitigation could increase water stress more than the climate change it is mitigating. Proceedings of the National Academy of Sciences, 112(34): 1063510640. DOI: 10.1073/pnas.1421675112
  21. Kim, S H, Hejazi, M, Liu, L, Calvin, K, Clarke, L, Edmonds, J, Kyle, P, Patel, P, Wise, M and Davies, E 2016 Balancing global water availability and use at basin scale in an integrated assessment model. Climatic Change, 136(2): 217231. DOI: 10.1007/s10584-016-1604-6
  22. An Introduction to NetCDF http://www.unidata.ucar.edu/software/netcdf/docs/netcdf_introduction.html.
DOI: https://doi.org/10.5334/jors.197 | Journal eISSN: 2049-9647
Language: English
Submitted on: Sep 29, 2017
Accepted on: Dec 7, 2017
Published on: Feb 9, 2018
Published by: Ubiquity Press
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2018 Xinya Li, Chris R. Vernon, Mohamad I. Hejazi, Robert P. Link, Zhongwei Huang, Lu Liu, Leyang Feng, published by Ubiquity Press
This work is licensed under the Creative Commons Attribution 4.0 License.