This article, published in Sustainability in 2018, characterizes the boat wake climate in Florida's Intracoastal Waterway, assesses the area's bathymetry, and anticipates the effects of experimental living shorelines (natural breakwall and oyster restoration structures) on facilitating sediment deposition and slowing vegetation retreat.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This manual describes methods employed by a 2015 Collaborative Research project team to dissipate wave energy along the Atlantic Intracoastal Waterway in Ponte Vedra Beach, Florida.
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This report describes the findings of a 2011 Collaborative Research project that investigated the Matanzas Basin's vulnerability to sea level rise in Florida and identified potential adaptation strategies.
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This game developed as part of the 2011 Collaborative Research project "Planning for Florida's Rising Tides" introduces participants to sea level rise adaptation strategies and provides an understanding of the participants' preferences for different strategies.
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This pre-survey is part of a role-play game developed as part of a 2011 Collaborative Research project on sea level rise adaptation in Florida. Each player is assigned a different stakeholder role and fills out this pre-survey before starting the game, which serves as a foundation for helping participants understand each others' perceptions of sea level rise adaptation strategies.
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This project overview describes a 2011 Collaborative Research project that piloted an approach for stakeholder-driven planning that communities in Florida can use to prepare for sea level rise.
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This project overview describes a 2012 Collaborative Research project that assessed the ability and cost-effectiveness of marsh restoration designs to remove nitrogen pollution from stormwater runoff.
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This project overview describes a 2013 project that created an online portal for scientists and fisheries managers to share and use data on larval fish recruitment and environmental variables.
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This code (R and MATLAB) can be used to analyze NERRS System-Wide Monitoring Program time series data.
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This project overview describes the project approach, results, and benefits of a 2016-2020 collaborative research project that increased clarity about marsh habitat change to inform mosquito control and coastal restoration efforts in New Jersey