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The impact of decadal fluctuations in mean precipitation and temperature on runoff: A sensitivity study over the United States

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Abstract

The nature of climate variability is such that decadal fluctuations in average temperature (up to 1 °C annually or 2 °C seasonally) and precipitation (approximately 10% annually), have occurred in most areas of the United States during the modern climate record (the last 60 years). The impact of these fluctuations on runoff was investigated, using data from 82 streams across the United States that had minimal human interference in natural flows. The effects of recent temperature fluctuations on streamflow are minimal, but the impact of relatively small fluctuations in precipitation (about 10%) are often amplified by a factor of two or more, depending on basin and climate characteristics. This result is particularly significant with respect to predicted changes in temperature due to the greenhouse effect. It appears that without reliable predictions of precipitation changes across drainage basins, little confidence can be placed in hypothesized effects of the warming on annual runoff.

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References

  • Alley, W. E. and Lins, H. F.: 1986, United States Geological Survey, Reston VA, pers. comm.

  • Burnash, R. J. C.: 1985, ‘Real-time Forecasting with the Sacramento Watershed Model’, Joint proceedings of Fifth Annual AGU Front Range Branch Hydrology Days and the Fourteenth Annual Rocky Mountain Groundwater Conference. Hydrology Days Publications, 1005 Country Club Road, Ft. Collins, CO 80524, pp. 104–114.

  • Callaway, J. M. and Currie, J. W.: 1985, ‘Water Resource Systems and Changes in Climate and Vegetation’, in M. R. White, (ed.), Characterization of Information Requirements for Study of CO 2 Effects: Water Resources, Agriculture, Fisheries, Forests, and Human Health, U.S. Dept. of Energy, DOE/-0236.

  • Gleick, P. H.: 1986, ‘Methods for Evaluating the Regional Hydrological Impact of Global Climatic Changes’, J. of Hydrology 88, 97–116.

    Google Scholar 

  • Gleick, P. H.: 1987, ‘Regional Hydrologic Consequences of Increases of Atmospheric CO2 and Other Trace Gases’, Climatic Change 110, 137–161.

    Google Scholar 

  • Karl, T. R. and Knight, R. W.: 1986, ‘Atlas of Monthly and Seasonal Precipitation Departures from Normal (1895–1985) for the Contiguous United States’, Historical Climatology Series 3–12, National Climatic Data Center, Asheville, NC.

    Google Scholar 

  • Karl, T. R.: 1988, ‘Multi-year Climate Fluctuations: The Gray Areas of Climate Change’, Climate Change 12, 179–197.

    Google Scholar 

  • Karl, T. R. and Riebsame, W. E.: 1984, ‘The Identification of 10- to 20-year Climate Fluctuations in the Contiguous United States’, J. Clim. Appl. Meteor. 23, 950–966.

    Google Scholar 

  • Karl, T. R., Williams, C. W. Jr., Young, P. J., and Wendland, W. M.: 1986, ‘A Model to Estimate the Time of Observation Bias Associated with Monthly Mean Maximum, Minimum and Mean Temperatures for the United States’, J. Clim. Appl. Meteor. 25, 145–160.

    Google Scholar 

  • Karl, T. R. and Williams, C. W. Jr.: 1987, ‘An Approach to Adjusting Climatological Time Series for Discontinuous Inhomogeneities’, J. Clim. Appl. Meteor. 1744–1763.

  • Kates, R. W., Ausubel, J. H., and Barberian, M.: eds., 1985, ‘Climate Impact Assessment’, John Wiley and Sons, New York, NY, 621 pp.

    Google Scholar 

  • Klemes, V.: 1985, Sensitivity of Water Resources to Climate Variations, World Climate Programme, World Meteorological Organization, WCP-98, Geneva, Switzerland, pp. 1–17; Appendix B.

  • Langbein, W. B.: 1949, Annual Runoff in the United States, U.S. Geological Survey Circular 5. U.S. Dept. of the Interior, Washington, DC (reprinted, 1959).

    Google Scholar 

  • Nemec, J. and Schaake, J.: 1982, ‘Sensitivity of Water Resources to Climate Variations’, Hydrol. Sci. J. 27, 327–343.

    Google Scholar 

  • Revelle, R. R. and Waggoner, P. E.: 1983, ‘Effects of a Carbon Dioxide-Induced Climatic Change on Water Supplies in the Western United States’, in Changing Climate, Report of the Carbon Dioxide Assessment Committee, National Academy Press, Washington, DC, pp. 419–431.

    Google Scholar 

  • Riebsame, W. E.: 1988, ‘Adjusting Water Resources Management to Climate Change’. Climatic Change 13: 69–97.

    Google Scholar 

  • Schlesinger, M. E. and Mitchell, J. F. B.: 1985, ‘Model Projection of the Equilibrium Climatic Response to Increased Carbon Dioxide’, in M. C. MacCracken and F. M. Luther, (eds.) Projecting the Climate Effects of Increasing Carbon Dioxide, U.S. Dept. of Energy, DOE/ER-0237.

  • Stockton, C. W. and Boggess, W. R.: 1979, ‘Geohydrological Implication of Climate Change on Water Resource Development’, U.S. Army Coastal Engineering Research Center, Ft. Belvoir, VA, and University of Arizona, Tucson, AZ, 206 pp.

    Google Scholar 

  • Wigley, T. M. L. and Jones, P. D.: 1985, ‘Influences of Precipitation Changes and Direct CO2 Effects on Streamflow’, Nature 314, 140–152.

    Google Scholar 

  • World Meteorological Organization: 1985, Report of the International Conference on the Assessment of the Role of Carbon Dioxide and of Other Trace Gases in Climate Variations and Associated Impacts. WMO 661. Geneva.

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Karl, T.R., Riebsame, W.E. The impact of decadal fluctuations in mean precipitation and temperature on runoff: A sensitivity study over the United States. Climatic Change 15, 423–447 (1989). https://doi.org/10.1007/BF00240466

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  • DOI: https://doi.org/10.1007/BF00240466

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