The impact of hydrograph variability and frequency on sediment transport dynamics in a gravel-bed flume

Journal Article (2019)
Author(s)

B. D. Plumb (University of Waterloo)

Carmelo Juez (Universidad Politécnica de Madrid, École Polytechnique Fédérale de Lausanne, Instituto Pirenaico de Ecología)

William K. Annable (University of Waterloo)

C. W. McKie (University of Waterloo)

M.J. Franca (TU Delft - Rivers, Ports, Waterways and Dredging Engineering, École Polytechnique Fédérale de Lausanne)

Research Group
Rivers, Ports, Waterways and Dredging Engineering
DOI related publication
https://doi.org/10.1002/esp.4770
More Info
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Publication Year
2019
Language
English
Research Group
Rivers, Ports, Waterways and Dredging Engineering
Issue number
4
Volume number
45 (2020)
Pages (from-to)
816-830

Abstract

A laboratory study was undertaken to investigate how changes in flow regime and hydrograph shape (number of cycled hydrographs and duration of each hydrograph) together impact bedload transport and resulting bed morphology. Three hydrologic conditions (experiments) representing different levels of urbanization, or analogously different flow regimes, were derived from measured hydrometric field data. Each experiment consisted of a series of hydrographs with equal peak discharge and varying frequency, duration and flashiness. Bedload transport was measured throughout each hydrograph and measurements of bed topography and surface texture were recorded after each hydrograph. The results revealed hysteresis loops in both the total and fractional transport, with more pronounced loops for longer duration hydrographs, corresponding to lower rate of unsteadiness until reaching the peak discharge (pre-urbanization conditions). Shorter duration hydrographs (urban conditions) displayed more time above critical shear stress thresholds leading to higher bedload transport rates and ultimately to more variable hysteresis patterns. Surface textures from photographic methods revealed surface armoring in all experiments, with larger armor ratios for longer duration hydrographs, speculated to be due to vertical sorting and more time for bed rearrangements to occur. The direction of bed surface adjustment was linked to bedload hysteresis, more precisely with clockwise hysteresis (longer hydrographs) typically resulting in bed coarsening. More frequent and shorter duration hydrographs result in greater relative channel adjustments in slope, topographic variability and surface texture.

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