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Evidence that Recent Warming is Reducing Upper Colorado River Flows

The upper Colorado River basin (UCRB) is one of the primary sources of water for the western United States, and increasing temperatures likely will elevate the risk of reduced water supply in the basin. Although variability in water-year precipitation explains more of the variability in water-year UCRB streamflow than water-year UCRB temperature, since the late 1980s, increases in temperature in the UCRB have caused a substantial reduction in UCRB runoff efficiency (the ratio of streamflow to precipitation). These reductions in flow because of increasing temperatures are the largest documented temperature-related reductions since record keeping began. Increases in UCRB temperature over the past three decades have resulted in a mean UCRB water-year streamflow departure of 21306 million m(3) (or -7% of mean water-year streamflow). Additionally, warm-season (April through September) temperature has had a larger effect on variability in water-year UCRB streamflow than the cool-season (October through March) temperature. The greater contribution of warm-season temperature, relative to cool-season temperature, to variability of UCRB flow suggests that evaporation or snowmelt, rather than changes from snow to rain during the cool season, has driven recent reductions in UCRB flow. It is expected that as warming continues, the negative effects of temperature on water-year UCRB streamflow will become more evident and problematic.

Identiferoai:union.ndltd.org:arizona.edu/oai:arizona.openrepository.com:10150/626427
Date12 1900
CreatorsMcCabe, Gregory J., Wolock, David M., Pederson, Gregory T., Woodhouse, Connie A., McAfee, Stephanie
ContributorsUniv Arizona, U.S. Geological Survey, Denver, Colorado, U.S. Geological Survey, Lawrence, Kansas, U.S. Geological Survey, Bozeman, Montana, The University of Arizona, Tucson, Arizona, Nevada State Climate Office, University of Nevada, Reno, Nevada
PublisherAMER GEOPHYSICAL UNION
Source SetsUniversity of Arizona
LanguageEnglish
Detected LanguageEnglish
TypeArticle
Rights© 2017 American Meteorological Society.
Relationhttp://journals.ametsoc.org/doi/10.1175/EI-D-17-0007.1

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