4.5 Article

Analysis of spatial and temporal patterns in a large reservoir using water quality and hydrodynamic modeling

Journal

ECOLOGICAL MODELLING
Volume 222, Issue 14, Pages 2485-2494

Publisher

ELSEVIER
DOI: 10.1016/j.ecolmodel.2010.07.019

Keywords

Water quality; Modeling; Reservoir; Hydrodynamic; Thermal stratification; Alqueva

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Funding

  1. Portuguese Science and Technology Foundation [FRH/BD/28491/2006]

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Effective management of reservoir water resources demands a good command of ecological processes in the waterbody. In this work the three-dimensional finite element hydrodynamic model RMA10 was coupled to an eutrophication model. The models were used together with a methodology for loads estimation to foster the understanding of such processes in the largest reservoir in Western Europe-the Alqueva. Nutrient enrichment and eutrophication are water quality concerns in this man-made impoundment. A total phosphorus and nitrogen loads quantification methodology was developed to estimate the inputs in the reservoir, using point and non-point source data. Field data (including water temperature, wind, water elevation, chlorophyll-a, nutrient concentration and dissolved oxygen) and estimated loads were used as forcing for simulations. The analysis of the modeling results shows that spatial and temporal distributions for water temperature, chlorophyll-a, dissolved oxygen and nutrients are consistent with measured in situ data. Modeling results allowed the identification of likely key impact factors on the water quality of the Alqueva reservoir. It is shown that the particular geomorphological and hydrological characteristics of the reservoir together with local climate features are responsible for the existence of distinct ecological regions within the reservoir. (C) 2010 Elsevier B.V. All rights reserved.

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