Time-variable transit time distributions and transport: Theory and application to storage-dependent transport of chloride in a watershed

被引:265
作者
Harman, Ciaran J. [1 ]
机构
[1] Johns Hopkins Univ, Dept Geog & Environm Engn, Baltimore, MD 21218 USA
基金
美国国家科学基金会;
关键词
transit time distributions; catchment; tracer; age; transport; storage; FRACTAL STREAM CHEMISTRY; RESIDENCE TIME; HYDROGRAPH SEPARATION; CONTAMINANT TRANSPORT; INFORMATION-THEORY; SOLUTE TRANSPORT; UPLAND CATCHMENT; HIGH-RESOLUTION; HYPORHEIC ZONE; MID-WALES;
D O I
10.1002/2014WR015707
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Transport processes and pathways through many hydrodynamic systems vary over time, often driven by variations in total water storage. This paper develops a very general approach to modeling unsteady transport through an arbitrary control volume (such as a watershed) that accounts for temporal variability in the underlying transport dynamics. Controls on the selection of discharge from stored water are encapsulated in probability distributions Q(ST,t) of age-ranked storage S-T (the volume of water in storage ranked from youngest to oldest). This framework is applied to a long-term record of rainfall and streamflow chloride in a small, humid watershed at Plynlimon, UK. While a time-invariant gamma distribution for (Q) produced a good fit to data, the fit was significantly improved when the distribution was allowed to vary with catchment storage. However, the variation was inverse to that of a well-mixed system where storage has a pure dilution effect. Discharge at high storage was predicted to contain a larger fraction of recent event water than at low storage. The effective volume of storage involved in transport was 3411 mm at mean catchment wetness, but declined by 71 mm per 1 mm of additional catchment storage, while the fraction of event water in discharge increased by 1.4%. This inverse storage effect is sufficient to reproduce the observed long-memory 1/f fractal spectral structure of stream chloride. Metrics quantifying the strength and direction of storage effects are proposed as useful signatures, and point toward a unified framework for observing and modeling coupled watershed flow and transport.
引用
收藏
页码:1 / 30
页数:30
相关论文
共 88 条
[1]  
Abramowitz M., 1964, Handbook of mathematical functions with formulas, graphs, and mathematical tables, DOI DOI 10.1119/1.15378
[2]  
Allen R. G., 1998, FAO Irrigation and Drainage Paper
[3]   Toward a generalization of the TOPMODEL concepts: Topographic indices of hydrological similarity [J].
Ambroise, B ;
Beven, K ;
Freer, J .
WATER RESOURCES RESEARCH, 1996, 32 (07) :2135-2145
[4]  
Bell J, 2005, 8 I HYDR CTR EC HYDR
[5]   Kinematics of age mixing in advection-dispersion models [J].
Benettin, Paolo ;
Rinaldo, Andrea ;
Botter, Gianluca .
WATER RESOURCES RESEARCH, 2013, 49 (12) :8539-8551
[6]   Chloride circulation in a lowland catchment and the formulation of transport by travel time distributions [J].
Benettin, Paolo ;
van der Velde, Ype ;
van der Zee, Sjoerd E. A. T. M. ;
Rinaldo, Andrea ;
Botter, Gianluca .
WATER RESOURCES RESEARCH, 2013, 49 (08) :4619-4632
[7]   Catchment-scale herbicides transport: Theory and application [J].
Bertuzzo, E. ;
Thomet, M. ;
Botter, G. ;
Rinaldo, A. .
ADVANCES IN WATER RESOURCES, 2013, 52 :232-242
[8]   On red herrings and real herrings: disinformation and information in hydrological inference [J].
Beven, Keith ;
Westerberg, Ida .
HYDROLOGICAL PROCESSES, 2011, 25 (10) :1676-1680
[9]   Assessing the value of high-resolution isotope tracer data in the stepwise development of a lumped conceptual rainfall-runoff model [J].
Birkel, C. ;
Dunn, S. M. ;
Tetzlaff, D. ;
Soulsby, C. .
HYDROLOGICAL PROCESSES, 2010, 24 (16) :2335-2348
[10]   A new approach to simulating stream isotope dynamics using Markov switching autoregressive models [J].
Birkel, Christian ;
Paroli, Roberta ;
Spezia, Luigi ;
Dunn, Sarah M. ;
Tetzlaff, Doerthe ;
Soulsby, Chris .
ADVANCES IN WATER RESOURCES, 2012, 46 :20-30