Chapter
Mar 25, 2013
Chapter 7

Physical Modeling of the Removal of Glines Canyon Dam and Lake Mills from the Elwha River, Washington

Publication: Sediment Dynamics upon Dam Removal
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REFERENCES

American Rivers, Friends of the Earth, and Trout Unlimited (AR/FE/TU). (1999). Dam removal success stories: Restoring rivers through selective removal of dams that don’t make sense, Trout Unlimited, Arlington, Va.
American Society of Civil Engineers (ASCE). (2000). Hydraulic modeling: Concepts and practice, ASCE Manuals and Reports on Engineering Practice No. 97, ASCE, Reston, Va.
ASCE. (1997). Guidelines for retirement of dams and hydroelectric facilities, ASCE, Reston, Va.
Annandale, G. W., and Morris, G. L. (1998). “Decommissioning of dams.” Morris G. L. and Fan J., eds., Reservoir sedimentation handbook: Design and management of dams, reservoirs, and watersheds for sustainable use, McGraw-Hill, New York, pp. 17.1–17.25.
Bromley, C., Cantelli, A., and Wooster, J. (2011). “Summary and synthesis of experimental research on stored sediment response to dam removal.” This volume.
Bureau of Reclamation. (1995). “Lake Mills reservoir site preconstruction topography–1926.” Drawing No. 1440-100-2, Acad V12, U.S. Dept. of the Interior, Bureau of Reclamation, Washington, D.C.
Cazanacli, D., Paola, C., and Parker, G. (2002). “Experimental steep, braided flow: Application to flooding risk on fans.” ASCE J. Hydraul. Eng., 128(3), 322–330.
Chanson, H. (1999). The hydraulics of flow in open channels, Edward Arnold Publishers, Ltd., London.
Elwha River Ecosystem and Fisheries Restoration Act. (1992). Public Law 102–495. National Park Service, U.S. Dept. of the Interior, <http://www.nps.gov/olym/naturescience/upload/ElwhaAct.pdf> (accessed June 17, 2010).
Graf, W. L. (1996). “Geomorphology and policy for restoration of impounded American rivers: What is ‘natural?’” Rhoads B. L. and Thorne C. R., eds., The scientific nature of geomorphology: Proceedings of the 27th Binghampton Symposium in Geomorphology, John Wiley & Sons, Inc., New York, pp. 443–472.
Larsen, P. (1990). “Limits and possibilities with artificial model bed load material.” Shen H. W., ed., Movable bed physical models, Nato Asi Series, Series C: Mathematical and Physical Sciences, Vol. 312, Kluwer Academic Publishers, Dordrecht, The Netherlands, pp. 1–12.
National Park Service. (2005). Final supplement to the final environmental impact statement, Elwha River ecosystem, restoration implementation, National Park Service, U.S. Dept. of the Interior, Washington, D.C.
National Park Service. (1995). Final environmental impact statement, Elwha River ecosystem restoration, Olympic National Park, National Park Service, U.S. Dept. of the Interior, Washington, D.C.
Schumm, S. A., Harvey, M. D., and Watson, C. C. (1984). Incised channels: Morphology, dynamics and control, Water Resources Publications, Littleton, Colo.
Schumm, S. A., Mosley, M. P., and Weaver, W. E. (1987). Experimental fluvial geomorphology,John Wiley & Sons, Inc., New York.
Simon, A. (1992). “Energy, time, and channel evolution in catastrophically disturbed fluvial systems.” Geomorphology, 5(3–5), 345–372.
Simon, A. (1989). “A model of channel response in disturbed alluvial channels.” Earth Surface Processes and Landforms,14, 11–26.
Stanley, E. H., and Doyle, M. W. (2003). “Trading off: The ecological effects of dam removal.” Frontiers in Ecol. and the Environ., 1(1), 15–22.
U.S. Geological Survey (USGS). (2000). “Hydrological data collected during the 1994 Lake Mills drawdown experiment, Elwha River, Washington.” Water-Resources Investigations Report 99-4215, U.S. Geological Survey, Tacoma, Wash.
Whipple, K. X., Parker, G., Paola, C., and Mohrig, D. (1998). “Channel dynamics, sediment transport, and the slope of alluvial fans: Experimental study.” J. Geology, 106(6), 677–693.

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Sediment Dynamics upon Dam Removal
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Published online: Mar 25, 2013

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