HR: 14:55h
AN: H53D-06 [Abstracts]
TI: Laboratory Modeling of Self-Formed Leveed Channels From Sediment-Laden Flows Entering Still
Water
AU: * Rowland, J C
EM: rowland@eps.berkeley.edu
AF: Dept. Earth & Planetary Science, University of California,
307 McCone Hall, Berkeley, CA 94720
AU: Dietrich, W E
EM: bill@eps.berkeley.edu
AF: Dept. Earth & Planetary Science, University of California,
307 McCone Hall, Berkeley, CA 94720
AB:
Self-formed leveed channels constructed by deposition of suspended sediment from sediment-laden flows entering still water
are common features in nature. Such channels drive delta progradation, develop at tidal inlets and occur where mainstem river
flows empty into oxbows and blocked valley lakes. Presently there is no theory for the formation of such channels. This
lack of theory is partly due to a lack of field or laboratory studies that provide insight about the mechanism controlling
these self-formed, propagating channels. The creation of such features in the laboratory, have proved illusive to date. Our
ongoing experiments aimed at modeling the formation of floodplain tie channels provide insight into the necessary conditions
for levee formation and channel growth. Under conditions of steady water discharge, constant sediment feed rate, unimodal
sediment distribution and invariant basin stage we are able to create subaqueous lateral bars (submerged levees) along the
margins of a sediment laden jet. Our results highlight the sensitivity of channel formation to issues of scaling and
experimental design. In the laboratory, levee formation has only been possible with the use of plastic particles (specific
gravity ~1.5); complete bed alluviation and dune formation results from the use of particles with specific gravities of ~
2.65 across a range grain diameters and shapes. We hypothesize this effect is related to high entrainment thresholds relative
to suspension thresholds of small (< 100 mm) natural particles under conditions of reduced turbulence in laboratory scaled
flows. Additionally, both the width to depth ratio and the form of the outlet channel introducing the sediment laden flow
into the experimental basin exert a strong control on sedimentation pattern and levee growth. Continuing experiments are
focused on generating emergent channel levees and a basin ward propagation of the channel by adjusting the form of the feed
channel, varying basin stage, and the use of unsteady discharge.
DE: 1815 Erosion and sedimentation
DE: 1824 Geomorphology (1625)
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting