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The evolution of climate change impact studies on hydrology and water resources in California

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Abstract

Potential global climate change impacts on hydrology pose a threat to water resources systems throughout the world. The California water system is especially vulnerable to global warming due to its dependence on mountain snow accumulation and the snowmelt process. Since 1983, more than 60 studies have investigated climate change impacts on hydrology and water resources in California. These studies can be categorized in three major fields: (1) Studies of historical trends of streamflow and snowpack in order to determine if there is any evidence of climate change in the geophysical record; (2) Studies of potential future predicted effects of climate change on streamflow and; (3) Studies that use those predicted changes in natural runoff to determine their economic, ecologic, or institutional impacts. In this paper we review these studies with an emphasis on methodological procedures. We provide for each category of studies a summary of significant conclusions and potential areas for future work.

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References

  • Aguado E, Cayan DR, Riddle LG, Roos M (1992) Climatic fluctuations and the timing of West Coast streamflow. J Climate 5:1468–1483

    Article  Google Scholar 

  • Arnell NW (1999) Climate change and global water resources. Glob Environ Change 9(Suppl):S31–S49

    Article  Google Scholar 

  • Brekke LD, Miller NL, Bashford KE, Quinn NWT, Dracup JA (2004) Climate change impacts uncertainty for water resources in the San Joaquin River Basin, California. J Am Water Resour Assoc 40(1):149–164

    Google Scholar 

  • Carpenter TM, Georgakakos KP (2001) Assessment of Folsom lake response to historical and potential future climate scenarios: 1. Forecasting. J Hydrol 249(1–4):148–175

    Article  Google Scholar 

  • Cayan DR, Riddle LG (1993) The influence of precipitation and temperature on seasonal streamflow in California. Water Resour Res 29(4):1127–1140

    Article  Google Scholar 

  • Cayan DR, Kammerdiener S, Dettinger MD, Caprio J, Peterson DH (2001) Changes in the onset of spring in the Western United States. Bull Am Meteorol Soc 82:399–415

    Article  Google Scholar 

  • Dettinger MD (2004) From climate change spaghetti to climate change distribution. Prepared for California Energy Commission. Public Interest Research Program. Sacramento, CA. Available at: http://www.energy.ca.gov/reports/2004-04-22_500-04-028.PDF

  • Dettinger MD (2005) From climate change spaghetti to climate change distributions for 21st century. San Francisco Estuary and Watershed Science 3(1)

  • Dettinger MD, Cayan DR (1995) Large-scale atmospheric forcing of recent trends toward early snowmelt runoff in California. J Climate 8(3):606–623

    Article  Google Scholar 

  • Dettinger MD, Cayan DR, Meyer M, Jeton AE (2004) Simulated hydrologic responses to climate variations and change in the Merced, Carson, and American river Basins, Sierra Nevada, California, 1900–2099. Clim Change 62(1–3):283–317

    Article  Google Scholar 

  • Dracup JA, Vicuna S (2005) An overview of hydrology and water resources studies on climate change: the California experience. World Water Congress 2005. Impacts of Global Climate Change. World Water and Environmental Resources Congress 2005. May 15–19, 2005, Anchorage, Alaska. doi: 10.1061/40792(173)483

  • Dracup JA, Pelmulder SD, Howitt R, Horner G, Hanemann WM, Dumas CF, McCann R, Loomis J, Ise S (1993) Integrated modeling of drought and global warming: impacts on selected California resources. Report by the National Institute for Global Environmental Change. University of California, Davis, CA., p 112

  • Duel LFW Jr (1994) The sensitivity of Northern Sierra Nevada streamflow to climate change. Water Resour Bull 30(5):841–859

    Google Scholar 

  • Fox JP, Mongan TR, Miller WJ (1990) Trends in freshwater inflow to San Francisco Bay from the Sacramento-San Joaquin Delta. Water Resour Bull 26(1):101–116

    Google Scholar 

  • Frederick KD, Schwarz GE (1999) Socioeconomic impacts of climate change on U.S. water supplies. J Am Water Resour Assoc 35(6):1563–1583

    Google Scholar 

  • Freeman GJ (2002) Looking for recent climatic trends and patterns in California’s Central Sierra. In Proceedings 19th Annual Pacific Climate (PACLIM) Workshop, Pacific Grove, CA pp 35–48

  • Georgakakos KP, Graham NE, Carpenter TM, Georgakakos AP, Yao H (2005) Integrating climate-hydrology forecasts and multi-objective reservoir management for Northern California. EOS, Trans, AGU 86(12)

  • Gleick P (1986) Methods for evaluating the regional hydrologic impacts of global climatic changes. J Hydrol 88:97–116

    Article  Google Scholar 

  • Gleick PH (1987) Regional hydrologic consequences of increases in atmospheric CO2 and other trace gases. Clim Change 10:137–161

    Article  Google Scholar 

  • Gleick PH (1989) Climate change, hydrology, and water resources. Rev Geophys 27(3):329–344

    Google Scholar 

  • Gleick PH (2000) US national assessment of the potential consequences of climate variability and change. Sector: water resources. A Report of the National Assessment Synthesis Team. US Global Change Research Program. Washington, D.C

  • Gleick PH, Chalecki EL (1999) The impacts of climatic change for water resources of the Colorado and Sacramento-San Joaquin river basins. J Am Water Resour Assoc 35(6):1429–1441

    Google Scholar 

  • Haddad BM, Merrit K (2001) Evaluating regional adaptation to climate change: the case of California water. Advances in Economics of Environmental Resources 3:65–93

    Article  Google Scholar 

  • Hay LE, Wilby RL, Leavesley GH (2000) A comparison of delta change and downscaled GCM scenarios for three mountainous basins in the United States. J Am Water Resour Assoc 36(2):387–397

    Google Scholar 

  • Hayhoe K, Cayan DR, Field C, Frumhoff P, Maurer E, Miller N, Moser S, Schneider S, Cahill K, Cleland E, Dale L, Drapek R, Hanemann RM, Kalkstein L, Lenihan J, Lunch C, Neilson R, Sheridan S, Verville J (2004) Emissions pathways, climate change, and impacts on California. Proceedings of the National Academy of Sciences (PNAS) 101(34):12422–12427

    Article  Google Scholar 

  • Huber-Lee A, Yates D, Purkey D, Yu W, Runkle B (2003) Water, climate, food, and environment in the Sacramento Basin. Contribution to the project ADAPT-Adaptation strategies to changing environments, Stockholm Environment Institute. Boston, MA

  • IPCC (2001) Climate change 2001: scientific basis. In: Metz B, et al (eds) Contribution of working group III to the third assessment report of the intergovernmental panel on climate change. Published for the Intergovernmental Panel on Climate Change (by) Cambridge University Press, Cambridge, UK; New York, NY, USA

  • Jeton AE, Dettinger MD, Smith JL (1996) Potential effects of climate change on streamflow: Eastern and Western slopes of the Sierra Nevada, California and Nevada. U.S. Geological Survey, Water Resources Investigations Report 95–4260, pp 44

  • Kim J (2001) A nested modeling study of elevation-dependent climate change signals in California induced by increased atmospheric CO2. Geophys Res Lett 28(15):2951–2954

    Article  Google Scholar 

  • Kim J (2005) A projection of the climate change induced by increased CO2 on extreme hydrologic events in the western U.S. Clim Change 68(1–2):153–168

    Article  Google Scholar 

  • Kim J, Kim T-K, Arritt RW, Miller NL (2002) Impacts of increased atmospheric CO2 on the hydroclimate of the Western United States. J Climate 15:1926–1942

    Article  Google Scholar 

  • Kiparsky M, Gleick PH (2003) Climate change and California water resources: a survey and summary of the literature. Pacific Institute for Studies in Development, Environment, and Security, Oakland, California. California Energy Commission. Report 500-04-073, Sacramento, CA

  • Knowles N, Cayan D (2002) Potential effects of global warming on the Sacramento/San Joaquin watershed and the San Francisco estuary. Geophys Res Lett 29(18):1891

    Article  Google Scholar 

  • Knowles N, Cayan DR (2004) Elevational dependence of projected hydrologic changes in the San Francisco estuary and watershed. Clim Change 62:319–336

    Article  Google Scholar 

  • Lettenmaier DP, Gan TY (1990) Hydrologic sensitivities of the Sacramento-San Joaquin river basin, California, to global warming. Water Resour Res 26:69–86

    Article  Google Scholar 

  • Lettenmaier DP, Sheer DP (1991) Climate sensitivity of California water resources. J Water Resour Plan Manage 117(1):108–125

    Google Scholar 

  • Lettenmaier DP, Gan TY, Dawdy DR (1988) Interpretation of hydrologic effects of climate change in the Sacramento-San Joaquin river basin, California. Prepared for U.S. Environmental Protection Agency. Department of Civil Engineering, University of Washington, Seattle, WA

  • Leung LR, Ghan S (1999) Pacific northwest climate sensitivity simulated by a regional climate model driven by a GCM. Part II: 2 × CO2 simulations. J Climate 12:2031–2053

    Article  Google Scholar 

  • Leung LR, Qian Y, Washington WM, Han J, Roads JO (2004) Mid-century ensemble regional climate change scenarios for the Western United States. Clim Change 62:75-113

    Article  Google Scholar 

  • Lund JR, Howitt RE, Jenkins MW, Zhu T, Tanaka SK, Pulido M, Tauber M, Ritzema R, Ferriera I (2003) Climate warming & California’s water future. Report 03-1. Center for Environmental and Water Resource Engineering. University of California, Davis. California Energy Commission, Sacramento, CA. Available at: http://cewre.engr.ucdavis.edu/Pub/Lund/03-1.pdf

  • Maurer EP, Duffy PB (2005) Uncertainty in projections of streamflow changes due to climate change in California. Geophys Res Lett 32(3)

  • McCabe GJ, Wolock DM (1999) General-circulation-model simulations of future snowpack in the western United States. J Am Water Resour Assoc 35(6):1473–1484

    Google Scholar 

  • Miller NL, Kim J (2000) Climate change sensitivity analysis for two California waterhseds: addendum to downscaled climate and streamflow study of the Southwestern United States. J Am Water Resour Assoc 36(3):657–661

    Google Scholar 

  • Miller NL, Kim J, Hartman RK, Farrara J (1999) Downscaled climate and streamflow study of the Southwestern United States. J Am Water Resour Assoc 35(6):1525–1537

    Google Scholar 

  • Miller NL, Bashford KE, Strem E (2003) Potential impacts of climate change on California hydrology. J Am Water Resour Assoc 39(4):771–784

    Google Scholar 

  • Mote PW, Hamlet AF, Clark MP, Lettenmaier DP (2005) Declining mountain snowpack in Western North America. Bull Am Meteorol Soc 86(1):39–49

    Article  Google Scholar 

  • Peterson DH, Smith RE, Dettinger MD, Cayan DR, Riddle L (2000) An organized signal in snowmelt runoff over the western United States. J Am Water Resour Assoc 36(2):421–432

    Google Scholar 

  • Phillips N (1956) The general circulation of the atmosphere: a numerical experiment. Q J R Meteorol Soc 82:123–164

    Article  Google Scholar 

  • Pupacko A (1993) Variations in northern Sierra Nevada streamflow: implications of climate change. Water Resour Bull 29(2):283–290

    Google Scholar 

  • Quinn NWT, Brekke LD, Miller NL, Heinzer T, Hidalgo H, Dracup JA (2004) Model integration for assessing future hydroclimate impacts on water resources, agricultural production and environmental quality in the San Joaquin Basin, California. Environ Model Softw 19:305–316

    Article  Google Scholar 

  • Regonda SK, Rajagopalan B, Clark M, Pitlick J (2005) Seasonal cycle shifts in hydroclimatology over the Western United States. J Climate 18(2):372–384

    Article  Google Scholar 

  • Revelle RR, Waggoner PE (1983) Effects of a carbon dioxide induced climatic change on water supplies in the Western United States. In: Changing climate. National Academy of Sciences Press, Washington, D.C

  • Riebsame WE (1988) Adjusting water resources management to climate change. Clim Change 13(1):69–97

    Article  Google Scholar 

  • Risbey JS (1998) Sensitivities of water supply planning decisions to streamflow and climate scenario uncertainty. Water Policy 1:321–340

    Article  Google Scholar 

  • Risbey JS, Entekhabi D (1996) Observed Sacramento Basin streamflow response to precipitation and temperature changes and its relevance to climate change impact studies. J Hydrol 184:209–223

    Article  Google Scholar 

  • Roos M (1987) Possible changers in California snowmelt patterns. In: Proceedings Fourth Annual Pacific Climate (PACLIM) Workshop, Pacific Grove, CA, pp 22–31

  • Roos M (1991) A trend of decreasing snowmelt runoff in northern California. In: Proceedings 59th Western Snow Conference, Juneau, AK, pp 29–36

  • Roos M (2003) The effects of global climate change on California water resources. A report for the Energy California Commission. Public Interest Energy Research Program. Research Development and Demonstration Plan. Sacramento, CA

  • Sandberg J, Manza P (1991) Evaluation of central valley project water supply and delivery system. Global Change Response Program, U.S. Department of Interior, Bureau of Reclamation, Sacramento, California

  • Shelton ML (1998) Seasonal hydroclimate change in the Sacramento river Basin, California. Phys Geogr 19(3):239–255

    Google Scholar 

  • Shelton ML, Fridirici RM (1997) Decadal changes of inflow to the Sacramento-San Joaquin Delta, California. Phys Geogr 18(3):215–231

    Google Scholar 

  • Snyder MA, Bell JB, Sloan LC, Duffy PB, Govindasamy B (2002) Climate responses to a doubling of atmospheric carbon dioxide for a climatically vulnerable region. Geophys Res Lett 29(11):1514–1517

    Article  Google Scholar 

  • Stewart IT, Cayan DR, Dettinger MD (2004) Changes in snowmelt runoff timing in western North America under a ‘business as usual’ climate change scenario. Clim Change 62(1–3):217–232

    Article  Google Scholar 

  • Stewart IT, Cayan DR, Dettinger MD (2005) Changes toward earlier streamflow timing across Western North America. J Climate 18(8):1136–1155

    Article  Google Scholar 

  • Tsuang BJ, Dracup JA (1991) Effect of global warming on Sierra Nevada mountain snow storage. In: Proceedings 59th Western Snow Conference, Juneau, AK, pp 17–28

  • Van Rheenen NT, Palmer RN, Hahn M (2003) Evaluating potential climate change impacts on water resource system operations: case studies of Portland, Oregon and Central Valley, California. Water Resources Update 124:35–50

    Google Scholar 

  • Van Rheenen NT, Wood AW, Palmer RN, Lettenmaier DP (2004) Potential implications of PCM climate change scenarios for Sacramento-San Joaquin River Basin hydrology and water resources. Clim Change 62(1–3):257–281

    Article  Google Scholar 

  • Wahl KL (1991) Is April to June runoff really decreasing in the western United States? In: Proceedings 59th Western Snow Conference, Juneau, AK, pp 67–78

  • Wilby RL, Dettinger MD (2000) Streamflow changes in the Sierra Nevada, California, simulated using statistically downscaled general circulation model output. In: McLaren S, Kniven D (eds) Linking climate change to land surface change. Kluwer Academic Pub., pp 99–121

  • Wilkinson R, Clarke K, Goodchild M, Reichman J, Dozier J (2002) The potential consequences of climate variability and change for California: the California regional assessment. U.S. Global Change Research Program, Washington, DC

    Google Scholar 

  • Williams PB (1988) The impacts of climate change on the salinity of San Francisco Bay. Philip Williams and Associates for Environmental Protection Agency

  • Wolock DM, McCabe GJ (1999) Estimates of runoff using water-balance and atmospheric general circulation models. J Am Water Resour Assoc 35(6):1341–1350

    Google Scholar 

  • Wood AW, Lettenmaier DP, Palmer RN (1997) Assessing climate change implications for water resources planning. Clim Change 37:203–228

    Article  Google Scholar 

  • Yao H, Georgakakos A (2001) Assessment of Folsom Lake response to historical and potential future climate scenarios 2. Reservoir management. J Hydrol 249(1–4):176–196

    Article  Google Scholar 

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Vicuna, S., Dracup, J.A. The evolution of climate change impact studies on hydrology and water resources in California. Climatic Change 82, 327–350 (2007). https://doi.org/10.1007/s10584-006-9207-2

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