A carbon flow-based modelling approach to ecophysiological processes and biomass dynamics of Vallisneria americana, with applications to temperate and tropical water bodies

Author:

Best Elly P.H.,Boyd William A.

Publisher

Elsevier BV

Subject

Ecological Modeling

Reference43 articles.

1. Bartell, S.M., Campbell, K.R., Best, E.P.H., Boyd, W.A., 2000. Interim Report For The Upper Mississippi River System—Illinois Waterway System Navigation Study. Ecological risk assessment of the effects of incremental increase of commercial navigation traffic (25, 50, 75, and 100%increase of 1992 baseline traffic) on submerged aquatic plants in the main channel borders. ENV Report 17. U.S. Army Corps of Engineers, Rock Island District, St. Louis District, St. Paul District.

2. Spatial modeling of eelgrass distribution in Great Bay, New Hampshire;Behm,2004

3. A Simulation Model for Growth of the Submersed Aquatic Macrophyte American Wildcelery (Vallisneria americana Michx.);Best,2001

4. Carbon Flow-based Modeling of Ecophysiological Processes and Biomass Dynamics in Submersed Aquatic Plants;Best,2007

5. Modeling submersed macrophyte growth in relation to underwater light climate: modeling approaches and application potential;Best;Hydrobiologia,2001

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