This Master's thesis examines sediment accumulation in two disparate coastal environments, including the Hudson River Reserve, as part of a larger research project about marsh formation and resilience, sediment movement, and the potential impact of dam removals.
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A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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Three related datasets were generated by the 2015 - 2019 collaborative research project Evaluating Living Shorelines to Inform Regulatory Decision-Making in South Carolina.
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This report summarizes the results of a multi-year collaborative research project that evaluated a range of living shoreline projects in South Carolina. The results and guidance are intended to provide agency partners with the science-based information to create a regulatory pathway and develop project standards for living shorelines in South Carolina.
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This website houses the Rapid Assessment Protocol for assessing the physical and ecological performance of nature-based engineered shoreline structures. You can also access additional resources associated with the Hudson River Sustainable Shorelines Project, including demonstration site case studies along the Hudson River.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the May 2019 webinar Human and Environmental Well-being in Alaska's Kachemak Bay Watershed: An Ecosystem Services Assessment.
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This project overview describes a project led by Elkorn Slough National Estuarine Research Reserve to communicate the results of a recent national synthesis of NERR Sentinel Site data on marsh resilience to sea level rise.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the April 2019 webinar New Research to Inform Living Shoreline Design, Placement and Monitoring.
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This 2019 report describes the findings of a University of Michigan SEAS Master's project which provides insights for KBNERR regarding current ecosystem services valued in Kachemak Bay using a socio-cultural, place-based, ecosystem services framework.
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This dataset includes a suite of measures of ecological and physical functions of built sustainable shoreline structures at a set of demonstration sites along the Hudson River.