In-stream geomorphic structures as drivers of hyporheic exchange

被引:200
作者
Hester, Erich T. [1 ]
Doyle, Martin W. [2 ]
机构
[1] Univ N Carolina, Curriculum Ecol, Chapel Hill, NC 27515 USA
[2] Univ N Carolina, Dept Geog, Chapel Hill, NC USA
关键词
D O I
10.1029/2006WR005810
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Common in-stream geomorphic structures such as debris dams and steps can drive hyporheic exchange in streams. Exchange is important for ecological stream function, and restoring function is a goal of many stream restoration projects, yet the connection between in-stream geomorphic form, hydrogeologic setting, and hyporheic exchange remains inadequately characterized. We used the models HEC-RAS, MODFLOW, and MODPATH to simulate coupled surface and subsurface hydraulics in a gaining stream containing a single in-stream geomorphic structure and to systematically evaluate the impact of fundamental characteristics of the structure and its hydrogeologic setting on induced exchange. We also conducted a field study to support model results. Model results indicated that structure size, background groundwater discharge rate, and sediment hydraulic conductivity are the most important factors determining the magnitude of induced hyporheic exchange, followed by geomorphic structure type, depth to bedrock, and channel slope. Model results indicated channel-spanning structures were more effective at driving hyporheic flow than were partially spanning structures, and weirs were more effective than were steps. Across most structure types, downwelling flux rate increased linearly with structure size, yet hyporheic residence time exhibited nonlinear behavior, increasing quickly with size at low structure sizes and declining thereafter. Important trends in model results were observed at the field site and also interpreted using simple hydraulic theory, thereby supporting the modeling approach and clarifying underlying processes.
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页数:17
相关论文
共 45 条
[1]  
[Anonymous], 1998, SOLUTE TRANSPORT MOD
[2]   SIMULATION OF SOLUTE TRANSPORT IN A MOUNTAIN POOL-AND-RIFFLE STREAM - A TRANSIENT STORAGE MODEL [J].
BENCALA, KE ;
WALTERS, RA .
WATER RESOURCES RESEARCH, 1983, 19 (03) :718-724
[3]  
BETHEL J, 2003, RESTORATION PUGET SO, P361
[4]   Sinuosity-driven hyporheic exchange in meandering rivers [J].
Boano, Fulvio ;
Camporeale, Carlo ;
Revelli, Roberto ;
Ridolfi, Luca .
GEOPHYSICAL RESEARCH LETTERS, 2006, 33 (18)
[5]   The functional significance of the hyporheic zone in streams and rivers [J].
Boulton, AJ ;
Findlay, S ;
Marmonier, P ;
Stanley, EH ;
Valett, HM .
ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1998, 29 :59-81
[6]   Hyporheic rehabilitation in rivers: restoring vertical connectivity [J].
Boulton, Andrew J. .
FRESHWATER BIOLOGY, 2007, 52 (04) :632-650
[7]   The influence of ambient groundwater discharge on exchange zones induced by current-bedform interactions [J].
Cardenas, M. Bayani ;
Wilson, J. L. .
JOURNAL OF HYDROLOGY, 2006, 331 (1-2) :103-109
[8]   Impact of heterogeneity, bed forms, and stream curvature on subchannel hyporheic exchange [J].
Cardenas, MB ;
Wilson, JL ;
Zlotnik, VA .
WATER RESOURCES RESEARCH, 2004, 40 (08) :W083071-W0830713
[9]  
Doll B.A., 2003, Stream restoration: A natural channel design handbook
[10]   Effective discharge analysis of ecological processes in streams [J].
Doyle, MW ;
Stanley, EH ;
Strayer, DL ;
Jacobson, RB ;
Schmidt, JC .
WATER RESOURCES RESEARCH, 2005, 41 (11) :1-16