TECHNICAL PAPERS
Feb 19, 2004

Energy Profiles Across Constructed Riffles

Publication: Journal of Hydraulic Engineering
Volume 130, Issue 3

Abstract

Riffle reconstruction has become an important river rehabilitation technique in disturbed channels. However, design has often lacked sufficient hydraulic analysis to adequately assess the potential effects on flow resistance and flood levels. This paper describes the results of a hydraulic field study of four steep gravel–cobble bed rivers where it was found that the energy loss across natural and constructed riffle–pool sequences varied between 50 and 100% of the total energy loss over a range of high discharges up to, and including bankfull. This demonstrates that riffle reconstruction can influence postrehabilitation flood elevations, and that the additional flow resistance should be an important consideration in design. Importantly, the observed riffle energy loss is found to vary between 0.5 and 1 times the riffle amplitude, and it is proposed that this relationship can be used to account for the additional hydraulic resistance imparted by constructed riffles in the design and analysis of riffle–pool rehabilitation initiatives in steep gravel–cobble bed rivers.

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References

ASCE Task Committee on Sediment Transport and Aquatic Habitats. (1992). “Sediment and aquatic habitat in river systems.” J. Hydraul. Eng., 118(5), 669–687.
Atwater, J. (1998). 8th Northview Scouts urban salmon habitat program final report and financial statement for 1997/98 grant-Beecher Creek habitat reconstruction, 8th Northview Scout Group, Burnaby, BC, Canada, 15p+design drawings.
Bisson, P. A., Nielson, J. L., Palmason, R. A., and Grove, L. E. (1982). “A system of naming habitat types in small streams, with examples of habitat utilization by salmonids during low flow.” Acquisition and utilization of aquatic habitat inventory information, N. B. Armantrout, ed., American Fisheries Society Western Division, Portland, Ore., 62–73.
Brookes, A. (1992). “River channel change.” The rivers handbook: hydrological and ecological principles, Vol. 2, P. Calow and G. E. Petts, eds., Blackwell Scientific, Oxford, U.K., 55–75.
Church, M. (1992). “Channel morphology and typology.” The rivers handbook: hydrological and ecological principles, Vol. 1, P. Calow and G. E. Petts, eds., Blackwell Scientific, Oxford, U.K., 126–143.
Church, M. A., McLean, D. G., and Wolcott, J. F. (1987). “River bed gravels: sampling and analysis.” Sediment transport in gravel-bed rivers, C. R. Thorne, J. C. Bathurst, and R. D. Hey, eds., Wiley, New York, 43–88.
Church, M., Wolcott, J., and Maizels, J.(1990). “Palaeovelocity: A parsimonious proposal.” Earth Surf. Processes Landforms, 15(5), 475–480.
Clifford, N. J., and Richards, K. S. (1992). “The reversal hypothesis and the maintenance of riffle-pool sequences: A review and field appraisal.” Lowland floodplain rivers: Geomorphological perspectives, P. A. Carling and G. E. Petts, eds., Wiley, Chichester, U.K., 43–70.
Ferguson, R. M., Lyness, J. F., Myers, W. R. C., and O’Sullivan, J. J.(1998). “Hydraulic performance of environmental features in rivers.” Water Environ. Manage., 12(4), 286–291.
Fischenich, J. C. (1994). “Instream and streambank environmental feature guidelines.” Hydraulic Engineering ‘94—Proc., Nat. Conf. on Hydraulic Engineering, ASCE, New York, 406–410.
Grant, G. E., Swanson, F. J., and Wolman, M. G.(1990). “Pattern and origin of stepped-bed morphology in high-gradient streams, Western Cascades, Oregon.” Geol. Soc. Am. Bull., 102(3), 340–352.
Hey, R. D.(1988). “Bar form resistance in gravel-bed rivers.” J. Hydraul. Eng., 114(12), 1498–1508.
Kondolf, G. M.(1998). “Lessons learned from river restoration projects in California.” Aquatic Conservation: Marine and Freshwater Ecosystems, 8(1), 39–52.
Kondolf, G. M., Smeltzer, M. W., and Railsback, S. F.(2001). “Design and performance of a channel reconstruction project in a coastal California gravel-bed stream.” Environ. Manage. (N.Y.), 26(6), 761–776.
Millar, R.(1999). “Grain and form resistance in gravel-bed rivers.” J. Hydraul. Res., 37(3), 303–312.
Newbury, R. (1995). “Rivers and the art of stream restoration.” Natural and anthropogenic influences in fluvial geomorphology, J. E. Costa, A. J. Miller, K. W. Potter, and P. R. Wilcock, eds., American Geophysical Union, Washington, D.C., 137–149.
Newbury, R., and Gaboury, M. (1994). Stream analysis and fish habitat design: A field manual, 2nd Ed., Newbury Hydraulics Ltd., Gibsons, B.C., Canada.
Newbury, R., Gaboury, M., and Bates, D. (1997). “Restoring habitats in channelized or uniform streams using riffle and pool sequences.” Fish Habitat Rehabilitation Procedures, Watershed Restoration Technical Circular No. 9, P. A. Slaney and D. Zaldokas, eds., Watershed Restoration Program, Ministry of Environment, Lands and Parks, Vancouver, B.C., Canada, 12.1–12.22.
Parker, G., and Peterson, A. W.(1980). “Bar resistance of gravel-bed streams.” J. Hydraul. Div., Am. Soc. Civ. Eng., 106(10), 1559–1575.
Prestegaard, K. L.(1983). “Bar resistance in gravel bed streams at bankfull stage.” Water Resour. Res., 19(2), 472–476.
Reeve, C. E., and Bettess, R. (1990). “Hydraulic performance of envi-ronmentally acceptable channels.” Proc., Int. Conf. on river flood hydraulics, W. R. White, ed., Wiley Chichester, U.K., 279– 287.
Thompson, D. M., and Hoffman, K. S.(2001). “Equilibrium pool dimensions and sediment-sorting patterns in coarse-grained New England channels.” Geomorphology, 38(3–4), 301–316.
von Euw, E., and Coulter Boisvert, M. (2000). “Stream improvements in the Brunette watershed: Two case studies in partnering.” Watershed Management 2000 Conf. Proc., Water Environment Federation, Alexandria, Va, 1–16.
Walker, D., Millar, R., and Newbury, R. (2003). “Hydraulic design of riffle-pool sequences.” Hydrotechnical Engineering: Bridging the Gap between Knowledge and Practice, Proc., 16th Canadian Hydrotechnical Conference (CD-ROM), Canadian Society of Civil Engineering, Hydrotechnical Division, Montréal.
Wolman, M. G.(1954). “A method of sampling coarse river-bed material.” Trans., Am. Geophys. Union, 35(6), 951–956.
Yen, B. C.(2002). “Open channel flow resistance.” J. Hydraul. Eng., 128(1), 20–39.

Information & Authors

Information

Published In

Go to Journal of Hydraulic Engineering
Journal of Hydraulic Engineering
Volume 130Issue 3March 2004
Pages: 199 - 207

History

Received: Mar 19, 2002
Accepted: Aug 18, 2003
Published online: Feb 19, 2004
Published in print: Mar 2004

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Authors

Affiliations

D. R. Walker
Water Resources Specialist, EIT, Golder Associates Ltd., 2390 Argentia Rd., Mississauga ON, Canada L5N 5Z7.
R. G. Millar
Associate Professor, Dept. of Civil Engineering, Univ. of British Columbia, 2324 Main Mall, Vancouver BC, Canada V6T 1Z4.
R. W. Newbury, P.E.
Principle, Newbury Hydraulics Ltd., 11215 Maddock Ave., Okanagan Centre BC, Canada V4V 2J7.

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