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Accelerating advances in continental domain hydrologic modeling

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Archfield, S. A., Clark, M., Arheimer, B., Hay, L. E., McMillan, H., Kiang, J. E., Seibert, J., Hakala, K., Bock, A., Wagener, T., Farmer, W.H., Andreassian, V., Attinger, S., Viglione, A., Knight, R., Markstrom, S., and Over, T. (2015). Accelerating advances in continental domain hydrologic modeling. Water Resources Research, 51(12), 10078-10091. http://doi.org/10.1002/2015WR017498

Summary

In the past, hydrologic modeling of surface water resources has mainly focused on simulating the hydrologic cycle at local to regional catchment modeling domains. There now exists a level of maturity among the catchment, global water security, and land surface modeling communities such that these communities are converging toward continental domain hydrologic models. This commentary, written from a catchment hydrology community perspective, provides a review of progress in each community toward this achievement, identifies common challenges the communities face, and details immediate and specific areas in which these communities can mutually benefit one another from the convergence of their research perspectives. Those include: (1) [...]

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  • John Wesley Powell Center for Analysis and Synthesis

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DOI https://www.sciencebase.gov/vocab/category/item/identifier /doi.org/10.1002/2015WR017498

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journalWater Resources Research
languageEnglish
noteArchfield, S. A., Clark, M., Arheimer, B., Hay, L. E., McMillan, H., Kiang, J. E., Seibert, J., Hakala, K., Bock, A., Wagener, T., Farmer, W.H., Andreassian, V., Attinger, S., Viglione, A., Knight, R., Markstrom, S., and Over, T. (2015). Accelerating advances in continental domain hydrologic modeling. Water Resources Research, 51(12), 10078-10091. http://doi.org/10.1002/2015WR017498

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