HR: 0800h
AN: H51E-0794 [Abstracts]
TI: Coarse sediment transport dynamics at three spatial scales of bedrock channel bed complexity
AU: * Goode, J R
EM: goode@cnr.colostate.edu
AF: Colorado State University, Campus Delivery 1482, Fort Collins, CO 80523,
AU: Wohl, E
EM: ellenw@cnr.colostate.edu
AF: Colorado State University, Campus Delivery 1482, Fort Collins, CO 80523,
AB:
Rivers incised into bedrock in fold-dominated terrain display a complex bed topography that strongly interacts with
local hydraulics to produce spatial differences in bed sediment flux. We used painted tracer clasts to investigate
how this complex bed topography influences coarse sediment transport at three spatial scales (reach, cross-
section and grain). The study was conducted along the Ocoee River gorge, Tennessee between the TVA Ocoee
#3 dam and the 1996 Olympic whitewater course. The bed topography consists of undulating bedrock ribs, which
are formed at a consistent strike to the bedding and cleavage of the metagreywake and phyllite substrate. Ribs
vary in their orientation to flow (from parallel to oblique) and amplitude among three study reaches. These
bedrock ribs create a rough bed topography that substantially alters the local flow field and influences reach-
scale roughness. In each reach, 300 tracer clasts were randomly selected from the existing bed material. Tracer
clasts were surveyed and transport distances were calculated after five scheduled summer releases and a suite
of slightly larger but sporadic winter releases. Transport distances were examined as a function of rib orientation
and amplitude (reach scale), spatial proximity to bedrock ribs and standard deviation of the bed elevation (cross-
section scale), and whether clasts were hydraulically shielded by surrounding clasts, incorporated in the armour
layer, imbricated, and/or existed in a pothole, in addition to size and angularity. At the reach scale, where ribs are
parallel to flow, lower reach-scale roughness leads to greater sediment transport capacity, sediment flux and
transport distances because transport is uninhibited in the downstream direction. Preliminary results indicate
that cross section scale characteristics of bed topography exert a greater control on transport distances than
grain size.
DE: 1825 Geomorphology: fluvial (1625)
DE: 1862 Sediment transport (4558)
SC: Hydrology [H]
MN: 2007 Fall Meeting