A sediment resuspension and water quality model of Lake Okeechobee

被引:81
|
作者
James, RT
Martin, J
Wool, T
Wang, PF
机构
[1] ASCI CORP,ENGN SERV,ATHENS,GA 30605
[2] US GEOL SURVEY,SAN DIEGO STATE UNIV FDN,MENLO PK,CA 94205
关键词
modeling; water quality; resuspension; sediment; suspended solids; nitrogen; phosphorus; algae; wind;
D O I
10.1111/j.1752-1688.1997.tb03540.x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The influence of sediment resuspension on the water quality of shallow labs is well documented. However, a search of the literature reveals no deterministic mass-balance eutrophication models that explicitly include resuspension. We modified the Lake Okeechobee water quality model - which uses the Water Analysis Simulation Package (WASP) to simulate algal dynamics and phosphorus, nitrogen, and oxygen cycles - to include inorganic suspended solids and algorithms that: (1) define changes in depth with changes in volume; (2) compute sediment resuspension based on bottom sheer stress; (3) compute partition coefficients for ammonia and ortho-phosphorus to solids; and (4) relate light attenuation to solids concentrations. The model calibration and validation were successful with the exception of dissolved inorganic nitrogen species which did not correspond well to observed data in the validation phase. This could be attributed to an inaccurate formulation of algal nitrogen preference and/or the absence of nitrogen fixation in the model. The model correctly predicted that the lake is light-limited from resuspended solids, and algae are primarily nitrogen limited. The model simulation suggested that biological fluxes greatly exceed external loads of dissolved nutrients; and sediment-water interactions of organic nitrogen and phosphorus far exceed external loads. A sensitivity analysis demonstrated that parameters affecting resuspension, settling sediment nutrient and solids concentrations, mineralization, algal productivity, and algal stoichiometry are factors requiring further study to improve our understanding of the Lake Okeechobee ecosystem.
引用
收藏
页码:661 / 680
页数:20
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