Will catchment characteristics moderate the projected effects of climate change on flow regimes in the Scottish Highlands?

被引:45
作者
Capell, R. [1 ]
Tetzlaff, D. [1 ]
Soulsby, C. [1 ]
机构
[1] Univ Aberdeen, Sch Geosci, Aberdeen AB24 3UF, Scotland
关键词
climate change; inter-site comparison; modelling; WATER-RESOURCES; STREAMFLOW RESPONSE; CAIRNGORM MOUNTAINS; MONTANE CATCHMENTS; SURFACE-WATER; TRANSIT TIMES; RIVER FLOWS; GROUNDWATER; UPLAND; HYDROLOGY;
D O I
10.1002/hyp.9626
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Regional climate models were used with the UKCP09 weather generator to downscale outputs from the HadCM3 General Circulation Model, to project climate change by 2050 in the Scottish Highlands. The resulting hydroclimatic data were used to drive a tracer-aided hydrological model to assess likely changes in flow regimes in three experimental catchments. These are located along a hydroclimatic transect from the wet, mild western Highlands (Strontian), through the colder, more continental central Highlands (Allt a' Mharcaidh), to the drier eastern Highlands (Girnock). At all sites, temperatures are projected to increase by around 2 degrees C, with associated increases in potential evapotranspiration. Precipitation is expected to increase by around 1015% at Strontian but remains slightly changed at the Allt a' Mharcaidh and Girnock. However, the seasonal distribution of precipitation is projected to change, increasing in winter and decreasing in summer. Cautious interpretation of model outputs indicates that flows are likely to change accordingly at all sites, though the characteristics of each catchment result in some subtle differences. At Strontian, marked increases in winter high flows are expected, at the Allt a' Mharcaidh, reduction in winter snowfall and reduced snowpack will increase winter high flows and moderate the influence of spring melts. In the Girnock, decreasing summer low flows are the most notable element of change. These subtle differences in response to climatic drivers are consistent with the distinct storage characteristics of the catchments which in turn reflect their landscape evolution histories. Copyright (c) 2012 John Wiley & Sons, Ltd.
引用
收藏
页码:687 / 699
页数:13
相关论文
共 56 条
[1]  
Bergstrom S., 1975, Nord. Hydrol, V6, P73, DOI DOI 10.2166/NH.1975.0006
[2]   Modelling everything everywhere: a new approach to decision-making for water management under uncertainty [J].
Beven, Keith J. ;
Alcock, Ruth E. .
FRESHWATER BIOLOGY, 2012, 57 :124-132
[3]   Uniqueness of place and process representations in hydrological modelling [J].
Beven, KJ .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2000, 4 (02) :203-213
[4]  
Boorman D.B., 1995, Institute of Hydrology Report 126
[5]   A review of paired catchment studies for determining changes in water yield resulting from alterations in vegetation [J].
Brown, AE ;
Zhang, L ;
McMahon, TA ;
Western, AW ;
Vertessy, RA .
JOURNAL OF HYDROLOGY, 2005, 310 (1-4) :28-61
[6]   Mapping first-order controls on streamflow from drainage basins:: the T3 template [J].
Buttle, Jim .
HYDROLOGICAL PROCESSES, 2006, 20 (15) :3415-3422
[7]   Projecting climate change impacts on stream flow regimes with tracer-aided runoff models - preliminary assessment of heterogeneity at the mesoscale [J].
Capell, R. ;
Tetzlaff, D. ;
Essery, R. ;
Soulsby, C. .
HYDROLOGICAL PROCESSES, 2014, 28 (03) :545-558
[8]   Can time domain and source area tracers reduce uncertainty in rainfall-runoff models in larger heterogeneous catchments? [J].
Capell, R. ;
Tetzlaff, D. ;
Soulsby, C. .
WATER RESOURCES RESEARCH, 2012, 48
[9]   Inter-comparison of hydro-climatic regimes across northern catchments: synchronicity, resistance and resilience [J].
Carey, Sean K. ;
Tetzlaff, Doerthe ;
Seibert, Jan ;
Soulsby, Chris ;
Buttle, Jim ;
Laudon, Hjalmar ;
McDonnell, Jeff ;
McGuire, Kevin ;
Caissie, Daniel ;
Shanley, Jamie ;
Kennedy, Mike ;
Devito, Kevin ;
Pomeroy, John W. .
HYDROLOGICAL PROCESSES, 2010, 24 (24) :3591-3602
[10]  
Change I.P.O.C., 2007, Contribution of Working Groups I, II and III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, V27, P408