Aquaculture Modeling and Monitoring Approach in Coastal Ecosystems

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This comprehensive modeling and monitoring approach focuses on understanding hydrodynamics, nutrient dynamics, and productivity in various organisms like salmon, oysters, and sea weed. Through data compilation, stakeholder involvement, and site selection informed by aquaculture, the project aims to enhance modeling capacity and monitor changing environmental conditions in coastal regions.


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  1. Modeling and Monitoring Approach Place-Based and Idea-Based (organism-based) Salmon: hydrodynamics (sea lice transport) Oysters: hydrodynamics, nutrient, light, and productivity dynamics Sea weed: hydrodynamics, light, and nutrient dynamics

  2. Theme 1: Growing Areas What do we want to know and what do we want to model? Newell, Brady, and Mayer

  3. Compile Existing Data with the help of Stakeholders Roessler (Bowdoin) 2017

  4. Aquaculture will inform site selection

  5. Damariscotta Sampling along the Estuarine Gradient Growing Area Darling Center Boothbay

  6. What we will be monitoring

  7. Storm in Late September

  8. Building Modeling Capacity INTEGRATION COBSCOOK CASCO and SACO Hydrodynamics Waves Biogeochemical Aquaculture Productivity Ecosystem 5 of 6 Regions with Existing Common Hydrodynamic Model Framework! (Xue)

  9. The times (and estuaries) are a changin Bernie McAlice took temperature (and other measurements) from the Darling Marine Center dock for approximately 10 years (1967-1977) Mary Jane Perry (current Director) has been collecting CHL and temperature for the last 14 years

  10. Lake Ice Out Dates in the Damariscotta River April 10th

  11. Spring Spring Bloom?

  12. Bigger Fall Blooms

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