HR: 0800h
AN: H51E-0814 [Abstracts]
TI: Field Investigation of Flow Structure and Channel Morphology at Confluent-Meander Bends
AU: * Riley, J D
EM: jdriley@uiuc.edu
AF: University of Illinois at Urbana-Champaign, Department of Geography
Room 220 Davenport Hall
607 South Mathews Avenue, Urbana, IL 61801-3671, United States
AU: Rhoads, B L
EM: brhoads@uiuc.edu
AF: University of Illinois at Urbana-Champaign, Department of Geography
Room 220 Davenport Hall
607 South Mathews Avenue, Urbana, IL 61801-3671, United States
AB:
The movement of water and sediment through drainage networks is inevitably influenced by the convergence of
streams and rivers at channel confluences. These focal components of fluvial systems produce a complex
hydrodynamic environment, where rapid changes in flow structure and sediment transport occur to accommodate
the merging of separate channel flows. The inherent geometric and hydraulic change at confluences also
initiates the development of distinct geomorphic features, reflected in the bedform and shape of the channel. An
underlying assumption of previous experimental and theoretical models of confluence dynamics has been that
converging streams have straight channels with angular configurations. This generalized conceptualization was
necessary to establish confluence planform as symmetrical or asymmetrical and to describe subsequent flow
structure and geomorphic features at confluences. However, natural channels, particularly those of meandering
rivers, curve and bend. This property and observation of channel curvature at natural junctions have led to the
hypothesis that natural stream and river confluences tend to occur on the concave outer bank of meander bends.
The resulting confluence planform, referred to as a confluent-meander bend, was observed over a century ago
but has received little scientific attention.
This paper examines preliminary data on three-dimensional flow structure and channel morphology at two
natural confluent-meander bends of varying size and with differing tributary entrance locations. The large river
confluence of the Vermilion River and Wabash River in west central Indiana and the comparatively small junction
of the Little Wabash River and Big Muddy Creek in southeastern Illinois are the location of study sites for field
investigation. Measurements of time-averaged three-dimensional velocity components were obtained at these
confluences with an acoustic Doppler current profiler for flow events with differing momentum ratios. Bed and
channel morphology were also surveyed with a digital fathometer to document geomorphic change. Preliminary
analysis of the velocity data reveals the presence of a well-defined shear layer between the converging flows and
secondary circulation in the main channel. The tributary channel appears to oppose high velocity flow directed
toward the outer bank by centrifugal acceleration through the meander bend of the main channel, thereby
diminishing erosion along the cut bank and possibly stabilizing the meander bend channel. The flow structure
and channel morphology of the study sites are compared to consider the effect of spatial scale and geometric
characteristics on confluent-meander bend dynamics.
DE: 1825 Geomorphology: fluvial (1625)
DE: 1856 River channels (0483, 0744)
SC: Hydrology [H]
MN: 2007 Fall Meeting