TECHNICAL PAPERS
Dec 13, 2002

Response of Velocity and Turbulence to Sudden Change of Bed Roughness in Open-Channel Flow

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Publication: Journal of Hydraulic Engineering
Volume 129, Issue 1

Abstract

The experimental study shows how an open-channel flow would respond to a sudden change (from smooth to rough) in bed roughness. Using a two-dimensional acoustic Doppler velocimeter and a laser Doppler velocimeter, the velocity, turbulent intensities, and Reynolds stress profiles at different locations along a laboratory flume were measured. Additionally, the water surface profile was also measured using a capacitance-type wave height meter. The experimental data show the formation of an internal boundary layer as a result of the step change in bed roughness. The data show that this boundary layer grows much more rapidly than that formed in close-conduit flows. The results also show that the equivalent bed roughness, bed-shear stress, turbulent intensities, and Reynolds stress change gradually over a transitional region, although the bed roughness changes abruptly. The behavior is different from that observed in close-conduit flows, where an overshooting property—which describes the ability of the bed-shear stress to attain a high-peak value over the section with the larger roughness, was reported. A possible reason for the difference is the variation of the water surface profile when an open-channel flow is subjected to a sudden change in bed roughness.

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References

Andreopoulos, J., and Wood, D. H.(1982). “The response of a turbulent boundary layer to a short length of surface roughness.” J. Fluid Mech., 118, 143–164.
Antonia, R. A., and Luxton, R. E.(1971). “The response of a turbulent boundary layer to a step change in surface roughness, I. Smooth to rough.” J. Fluid Mech., 48, 721–761.
Cheng, N. S., and Chiew, Y. M.(1998). “Turbulent open-channel flow with upward seepage.” J. Hydraul. Res., 36(3), 415–431.
Cheng, N. S., and Chiew, Y. M.(1999). “Analysis of initiation of sediment suspension from bed load.” J. Hydraul. Eng., 125(8), 855–861.
Fredsoe, J., Sumer, B. M., Laursen, T. S., and Pedersen, C.(1993). “Experimental investigation of wave boundary layers with a sudden change in roughness” J. Fluid Mech., V252, 117–145.
Graf, W. H. (1993). Fluvial hydraulics: Flow and transport processes in channels of simple geometry, Wiley, England.
Lohrmann, A., Cabrera, R., and Kraus, N. C. (1994). “Acoustic-doppler velocimeter (ADV) for laboratory use.” Fundamentals and advancements in hydraulic measurements and experimental proceedings, ASCE, Reston, Va., 351–365.
Nezu, I., and Tominaga, A. (1994). “Response of velocity and turbulence to abrupt changes from smooth to rough beds in open-channel flow.” Proc., Symposium on Fundamentals and Advancements in Hydraulic Measurements and Experimentation, Buffalo, N.Y., 195–204.
Schofield, W. H.(1981). “Turbulent shear flow over a step change in surface roughness.” J. Fluids Eng., 103(2), 344–351.
Townsend, A. A.(1966). “The flow in a turbulent boundary layer after a change in surface roughness.” J. Fluid Mech., 26, 255–266.

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Go to Journal of Hydraulic Engineering
Journal of Hydraulic Engineering
Volume 129Issue 1January 2003
Pages: 35 - 43

History

Received: Nov 10, 2000
Accepted: Sep 12, 2002
Published online: Dec 13, 2002
Published in print: Jan 2003

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Authors

Affiliations

Xingwei Chen
Associate Professor, College of Geographical Sciences, Fujian Teachers Univ., Fuzhou 350007, China; formerly, Research Fellow, School of Civil and Environmental Engineering, Nanyang Technological Univ., Nanyang Ave., Singapore 639798.
Yee-Meng Chiew, M.ASCE
Associate Professor, School of Civil and Environmental Engineering, Nanyang Technological Univ., Nanyang Ave., Singapore 639798.

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