Large changes in runoff in the north-central United States have occurred during the past century, with larger floods and increases in runoff tending to occur from the 1970s to the present. The attribution of these changes is a subject of much interest. Long-term precipitation, temperature, and streamflow records were used to compare changes in precipitation and potential evapotranspiration (PET) to changes in runoff within 25 stream basins. The basins studied were organized into four groups, each one representing basins similar in topography, climate, and historic patterns of runoff. Precipitation, PET, and runoff data were adjusted for near-decadal scale variability to examine longer-term changes. A nonlinear water-balance analysis shows that changes in precipitation and PET explain the majority of multidecadal spatial/temporal variability of runoff and flood magnitudes, with precipitation being the dominant driver. Historical changes in climate and runoff in the region appear to be more consistent with complex transient shifts in seasonal climatic conditions than with gradual climate change. A portion of the unexplained variability likely stems from land-use change.
Impact of Climate Variability on Runoff in the North-Central United States
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Technical Papers
Impact of Climate Variability on Runoff in the North-Central United States
Abstract
Supplemental Materials
Trends in Precipitation, Streamflow, and Evapotranspiration in the Great Plains of the United States
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Authors
Statistician, U.S. Geological Survey, 821 E Interstate Ave., Bismarck, ND 58503-1136 (corresponding author). E-mail: [email protected]
Associate Professor, Civil Engineering, North Dakota State Univ. Dept. 2470, P.O. Box 6050, Fargo, ND 58018-6050. E-mail: [email protected]
Research Statistician, U.S. Geological Survey, 821 E Interstate Ave., Bismarck, ND 58503-1136. E-mail: [email protected]
Received: April 27, 2012
Accepted: December 21, 2012
Published online: December 26, 2012
© 2014 American Society of Civil Engineers
