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Influence of Physical Forcing on Bottom-Water Dissolved Oxygen within Caloosahatchee River Estuary, Florida.

Authors :
Xia, Meng
Craig, Paul M.
Schaeffer, Blake
Stoddard, Andrew
Liu, Zhijun
Peng, Machuan
Zhang, Hongyan
Wallen, Christopher M.
Bailey, Nathan
Mandrup-Poulsen, Jan
Source :
Journal of Environmental Engineering. Oct2010, Vol. 136 Issue 10, p1032-1044. 13p. 1 Diagram, 1 Chart, 8 Graphs, 1 Map.
Publication Year :
2010

Abstract

Environmental Fluid Dynamics Code, a numerical estuarine and coastal ocean circulation hydrodynamic and eutrophication model, was used to simulate the distributions of dissolved oxygen (DO), salinity, water temperature, and nutrients in the Caloosahatchee River Estuary. Modeled DO, salinity, and water temperature were in good agreement with field observational data from the Florida Department of Environmental Protection and South Florida Water Management District. Sensitivity analyses identified the effects of river discharge, atmospheric winds, and tidal forcing on the spatial and temporal distributions of DO. Simulation results indicated that vertical mixing due to wind forcing increased the bottom DO concentration. River discharge enhanced stratification in deep locations but propagated vertical mixing in the shallow upper estuary. Finally, tidal forcing heavily influenced bottom layer DO concentrations throughout the whole river estuary. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07339372
Volume :
136
Issue :
10
Database :
Academic Search Index
Journal :
Journal of Environmental Engineering
Publication Type :
Academic Journal
Accession number :
53712017
Full Text :
https://doi.org/10.1061/(ASCE)EE.1943-7870.0000239