HR: 0800h
AN: H51E-0797 [Abstracts]
TI: Suspended Sediment Erosion in Laboratory Flume Experiments
AU: * Cornell, K M
EM: muir@alum.mit.edu
AF: Massachusetts Institute of Technology, Department of Earth Atmospheric and Planetary
Sciences, Cambridge, MA 02139,
AU: Johnson, J
EM: joelj@mit.edu
AF: Massachusetts Institute of Technology, Department of Earth Atmospheric and Planetary
Sciences, Cambridge, MA 02139,
AU: Whipple, K X
EM: kxw@asu.edu
AF: Arizona State University, School of Earth and Space Exploration, Tempe, AZ 85287,
AB:
Laboratory flume experiments were used to examine the role of suspended sediment abrasion in bedrock
channel erosion. A range of topographies was used, from a planar bed to a sinuous and scalloped inner
channel. Experiments were run separately with bedload (used to form topography) and suspended load at a
variety of water flows and sediment fluxes. Sediment samples were collected to determine mass flux and
concentration profiles. Erosion was measured between each timestep and erosion rate determined for a variety
of conditions. Rouse, Froude, and Stokes numbers were calculated from measured data for various timesteps to
determine mode of sediment transport and flow characteristics. Flow was supercritical, and sediment was in
suspension. Erosion patterns around imposed topography perturbations (a rock protrusion and a drilled pothole)
were briefly examined. A hydraulic jump was used in one timestep to see the effect of the transition from
supercritical to subcritical flow. Suspended sediment causes erosion in all bed morphologies. The amount and
pattern of erosion are coupled to topography, but are not constrained by it to the same degree as bedload. As in
the case of bedload, suspended sediment erosion is strongly coupled to sediment flux.
DE: 1625 Geomorphology and weathering (0790, 1824, 1825, 1826, 1886)
DE: 1815 Erosion
SC: Hydrology [H]
MN: 2007 Fall Meeting