Mediating stream baseflow response to climate change: The role of basin storage

被引:22
作者
Buttle, James M. [1 ]
机构
[1] Trent Univ, Sch Environm, Peterborough, ON K9L 0G2, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
baseflow; climate change; dynamic storage; flow duration curve; hydrogeology; land use; land cover; oak ridges moraine; physiography; storage; OAK-RIDGES MORAINE; SOUTHERN ONTARIO; GROUNDWATER RECHARGE; POTENTIAL IMPACTS; DYNAMIC STORAGE; WATER STORAGE; TRANSIT-TIME; CATCHMENT; PRECIPITATION; TRENDS;
D O I
10.1002/hyp.11418
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Inter-basin differences in streamflow response to changes in regional hydroclimatology may reflect variations in storage characteristics that control the retention and release of water inputs. These aspects of storage could mediate a basin's sensitivity to climate change. The hypothesis that temporal trends in stream baseflow exhibit a more muted reaction to changes in precipitation and evapotranspiration for basins with greater storage was tested on the Oak Ridges Moraine (ORM) in Southern Ontario, Canada. Long-term (>25years) baseflow trends for 16 basins were compared to corresponding trends in precipitation amount and type and in potential evapotranspiration as well as shorter trends in groundwater levels for monitoring wells on the ORM. Inter-basin differences in storage properties were characterized using physiographic, hydrogeologic, land use/land cover, and streamflow metrics. The latter included the slope of the basin's flow duration curve and basin dynamic storage. Most basins showed temporal increases in baseflow, consistent with limited evidence of increases and decreases in regional precipitation and snowfall: precipitation ratio, respectively, and recent increases in groundwater recharge along the crest of the ORM. Baseflow trend magnitude was uncorrelated to basin physiographic, hydrogeologic, land use/land cover, or flow duration curve characteristics. However, it was positively related to a basin's dynamic storage, particularly for basins with limited coverage of open water and wetlands. The dynamic storage approach assumes that a basin behaves as a first-order dynamical system, and extensive open water and wetland areas in a basin may invalidate this assumption. Previous work suggested that smaller dynamic storage was linked to greater damping of temporal variations in water inputs and reduced interannual variability in streamflow regime. Storage and release of water inputs to a basin may assist in mediating baseflow response to temporal changes in regional hydroclimatology and may partly account for inter-basin differences in that response. Such storage characteristics should be considered when forecasting the impacts of climate change on regional streamflow.
引用
收藏
页码:363 / 378
页数:16
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