This project overview describes a 2015 Science Transfer project that developed products to support New York State decision makers considering nature-based shoreline approaches and other natural resilience measures.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This project overview describes a 2015 Science Transfer project that produced tools, graphical support, and training for research staff at the Mid-Atlantic reserves to better utilize reserve monitoring data.
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This project overview describes a 2018 Science Transfer project where three Northeast reserves are collaborating to develop consensus-based recommendations for pollutant load reduction performance curves to help New Hampshire communities use buffers to meet in-stream pollution reduction targets.
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This project overview describes a 2018 Catalyst project led by the University of New Hampshire that is synthesizing salt marsh vegetation and elevation data to improve coastal wetland management in New England.
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This webpage provides a summary of and resources related to an October 2018 workshop at the GTM NERR in northeastern Florida, including all presentation slides.
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These slides summarize a webinar given by Cory Riley of the Great Bay Reserve on March 27, 2018 about her 2015 Integrated Assessment on vegetated buffer use in New Hampshire.
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A suite of information and decision-support tools for landowners, communities, and policymakers interested in leveraging the benefits of buffers is now available thanks to a two-year effort to collect and integrate information about buffer protection and management.
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These slides summarize a webinar given by Dwayne Porter on February 28, 2018 about why environmental data management is important and the role it plays in the NERRS System-wide Monitoring Program.
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This project overview describes a 2010 Collaborative Research project that advanced understanding of the economic, ecological, and engineering tradeoffs associated with different shoreline management options on New York's Hudson River.