HR: 0800h
AN: H41A-0286 [Abstracts]
TI: Modeling Dispersion in Tidal Channels
AU: * Sanders, B
EM: bsanders@uci.edu
AF: Department of Civil and Environmental Engineering
University of California, Irvine, Zot 2175, Irvine, CA 92697-2175
United States
AU: Arega, F
EM: Arega.Feleke@epamail.epa.gov
AF: Ecosystems Research Division
U.S. Environmental Protection Agency, 960 College Station Road, Athens, GA 30605
United States
AB:
Dispersion in unstratified tidal channels is analogous to dispersion in streams. In a southern California inter-tidal wetland
characterized by depths of roughly 1 m, a dye study illustrates non-Gaussian longitudinal mixing characteristics which are
predicted using a depth-integrated numerical model that uses physically meaningful mixing parameters. Longitudinal dispersion
is based on Elder's model and transverse mixing is based on observations by Ward. Mixing parameters are linearly related to
the product of shear velocity and the depth. Flow resistance and dispersion are scaled by a common parameter, the bed
roughness. The numerical model, based on the finite volume method, gives non-oscillatory flow and transport predictions and
is stable for Courant numbers less than one and diffusion numbers less than one-half. The finite volume method facilitates
use of physically meaningful mixing parameters since these may be arbitrarily small and not affect model stability.
DE: 1890 Wetlands
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting