Using time domain and geographic source tracers to conceptualize streamflow generation processes in lumped rainfall-runoff models

被引:90
作者
Birkel, Christian [1 ,2 ]
Tetzlaff, Doerthe [2 ]
Dunn, Sarah M. [1 ]
Soulsby, Chris [2 ]
机构
[1] Macaulay Land Use Res Inst, Aberdeen AB15 8QH, Scotland
[2] Univ Aberdeen, No Rivers Inst, Sch Geosci, Aberdeen AB24 3UF, Scotland
关键词
HYDROGRAPH SEPARATION; SURFACE-WATER; TRANSIT TIMES; CATCHMENT; GROUNDWATER; CALIBRATION; HYDROLOGY; DEUTERIUM; PRECIPITATION; TRANSPORT;
D O I
10.1029/2010WR009547
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The temporal dynamics and geographical sources of streamflow were conceptualized in a lumped rainfall-runoff model (isoSAM(dyn)) using isotopic and geochemical tracers derived from a field study in a 3.6 km(2) upland catchment in Scotland. High-resolution (daily) sampling of stable isotopes in precipitation and streamflow over a hydrological year, supplemented by fortnightly sampling of groundwater and riparian saturation zones, allowed hypotheses of runoff generation processes to be tested. These were conceptualized in a previously developed model (SAM(dyn)) based only on geochemically defined geographic source tracers, which showed that the nonlinear dynamic expansion and contraction of riparian saturation areas is the dominant mechanism for storm runoff generation in the catchment. While SAM(dyn) resulted in reasonable simulation of streamflows and alkalinity (as a source tracer), it was unable to reproduce the rainfall-runoff dynamics of deuterium (delta H-2). Using the model in a learning framework, incorporation of parameters for passive storage in catchment hillslopes and groundwater mixing in riparian saturation zones, along with associated isotopic fractionation, improved delta H-2 simulations in stream water and the major catchment water stores. The resulting model provided a conceptualization of rainfall-runoff processes that broadly reconciled hydrometric data and geochemical and isotopic signals. However, in this particular catchment, fractionation of water in surface saturation zones appears to be a complex process that prevents the simulation of short-term isotope dynamics in the stream during the summer period.
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页数:15
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共 76 条
  • [1] Subsurface flow paths in a steep, unchanneled catchment
    Anderson, SP
    Dietrich, WE
    Montgomery, DR
    Torres, R
    Conrad, ME
    Loague, K
    [J]. WATER RESOURCES RESEARCH, 1997, 33 (12) : 2637 - 2653
  • [2] Araguás-Araguás L, 2000, HYDROL PROCESS, V14, P1341, DOI 10.1002/1099-1085(20000615)14:8<1341::AID-HYP983>3.0.CO
  • [3] 2-Z
  • [4] Barnes CJ, 1996, HYDROL PROCESS, V10, P793, DOI 10.1002/(SICI)1099-1085(199606)10:6<793::AID-HYP372>3.0.CO
  • [5] 2-K
  • [6] High-frequency field-deployable isotope analyzer for hydrological applications
    Berman, Elena S. F.
    Gupta, Manish
    Gabrielli, Chris
    Garland, Tina
    McDonnell, Jeffrey J.
    [J]. WATER RESOURCES RESEARCH, 2009, 45
  • [8] Assessing the value of high-resolution isotope tracer data in the stepwise development of a lumped conceptual rainfall-runoff model
    Birkel, C.
    Dunn, S. M.
    Tetzlaff, D.
    Soulsby, C.
    [J]. HYDROLOGICAL PROCESSES, 2010, 24 (16) : 2335 - 2348
  • [9] Towards a simple dynamic process conceptualization in rainfall-runoff models using multi-criteria calibration and tracers in temperate, upland catchments
    Birkel, C.
    Tetzlaff, D.
    Dunn, S. M.
    Soulsby, C.
    [J]. HYDROLOGICAL PROCESSES, 2010, 24 (03) : 260 - 275
  • [10] Hillslope and wetland hydrodynamics in a tussock grassland, South Island, New Zealand
    Bowden, WB
    Fahey, BD
    Ekanayake, J
    Murray, DL
    [J]. HYDROLOGICAL PROCESSES, 2001, 15 (10) : 1707 - 1730