The joint probability method (JPM) is the traditional way to determine the base flood elevation due to storm surge, and it usually requires simulation of st
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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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This report presents the outcomes of a community stakeholder process in which participants engaged in an expert-facilitated and community-based approach to develop sea level rise adaptation options for a low-lying road in China Camp State Park, along San Francisco Bay, CA.
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James Arnott's dissertation contributes new, more extensive empirical data and analysis about the drivers and mechanisms of co-production with the aim to better understand how to accelerate the development of actionable sustainability science.
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The ocean is inextricably linked to human societies. Climate change and its associated impacts to the aquatic environment pose problems for human communities as well.
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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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This thesis represents the first study to examine a full individual energy budget for the triploid Eastern oyster, Crassostrea virginica, with implications for shellfish aquaculture in the southeastern United States.
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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 briefing document presents outcomes and findings from a science transfer project that developed and led role playing simulation exercises to help community leaders and stakeholders explore options for addressing flooding and other climate-related risks in South Carolina.
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This experimental study by Ada Bersoza Hernández and Christine Angelini informs the design of more durable wooden stabilization structures in coastal environments.
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This is a Senior Honors Thesis written by Kinsey Fischer, an advisee of Rachel Noble. This study was conducted as part of a 2016 - 2020 collaborative research project about stormwater impacts in Beaufort, North Carolina.