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DOI10.1007/s10584-019-02371-3
Propagation of future climate conditions into hydrologic response from coastal southern California watersheds
Feng D.; Beighley E.; Raoufi R.; Melack J.; Zhao Y.; Iacobellis S.; Cayan D.
发表日期2019
ISSN0165-0009
起始页码199
结束页码218
卷号153期号:2020-01-02
英文摘要As a biodiverse region under a Mediterranean climate with a mix of highly developed and natural watersheds, coastal Santa Barbara County (SB), located in southern California, is susceptible to the hydrologic impacts of climate change. This study investigates the potential changes in hydro-meteorological variables in this region as well as their societal and ecological implications for projected climate conditions during the twenty-first century. Daily streamflow ensembles from 135 coastal watersheds for the period 2021–2100 are developed using the Hillslope River Routing (HRR) model forced with downscaled precipitation and temperature projections derived from 10 climate models in the Coupled Model Inter-Comparison Project, Phase 5, and two emission scenarios (Representative Concentration Pathways, RCP, 4.5 and 8.5). Analysis of the projected ensemble precipitation and streamflow series relative to historical conditions (1961–2000) shows (i) minimal change in annual precipitation (median change within ±3%); (ii) an altered seasonal rainfall distribution with a decrease in rainfall at the beginning of the rainy season (Oct–Dec), an increase during the Jan–Mar period, and a decrease at the end of the season (Apr–Jun); (iii) increases in the magnitude and frequency of large storms (> 36 mm/day) which combined with a shorter rainy season, lead to increases in annual peak flows; and (iv) the propagation of the altered precipitation characteristics resulting in nonlinear changes in the magnitude and variability of annual maximum discharges (i.e., mean, standard deviation, skew) impacting estimated return period discharges (e.g., estimated 100-year flood discharges for the period 2061–2100 under 8.5 increase by up to 185%). While these results are specific to southern coastal California, the nature of nonlinear hydrologic response to altered precipitation characteristics underscores the value of regional studies investigating potential impacts of climate projections on streamflow dynamics. © 2019, Springer Nature B.V.
语种英语
scopus关键词Climate models; Rain; Stream flow; Watersheds; Annual precipitation; Hydrologic response; Mediterranean climates; Meteorological variables; Nonlinear hydrologic response; Precipitation characteristics; Southern California; Temperature projection; Climate change; climate conditions; coastal zone; future prospect; hydrological modeling; hydrological response; hydrometeorology; Mediterranean environment; precipitation (climatology); rainfall; streamflow; temperature; watershed; California; Santa Barbara County; United States
来源期刊Climatic Change
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/147525
作者单位Department of Civil and Environmental Engineering, Northeastern University, Boston, MA, United States; Department of Marine and Environmental Science, Northeastern University, Boston, MA, United States; Bren School of Environmental Science and Management, University of California, Santa Barbara, CA, United States; Scripps Institution of Oceanography, University of California, San Diego, CA, United States
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Feng D.,Beighley E.,Raoufi R.,et al. Propagation of future climate conditions into hydrologic response from coastal southern California watersheds[J],2019,153(2020-01-02).
APA Feng D..,Beighley E..,Raoufi R..,Melack J..,Zhao Y..,...&Cayan D..(2019).Propagation of future climate conditions into hydrologic response from coastal southern California watersheds.Climatic Change,153(2020-01-02).
MLA Feng D.,et al."Propagation of future climate conditions into hydrologic response from coastal southern California watersheds".Climatic Change 153.2020-01-02(2019).
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