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Resources

Resources

A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.

Displaying 1 - 10 of 15
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This guidance report from New York State ’s Department of Environmental Conservation and Department of State provides an overview of natural resilience measures and how they can reduce risk of flooding and erosion.

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This report discusses methods and results from a project to sythesize salt marsh monitoring from four New England NERRs from 2010 to 2018.

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This collection of reports summarizes Surface Elevation Table (SET) data at fiften reserves. A technical report analyzing of surface elevation change and a summary for oureach purposes is provided for each reserve.

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This report summarizes the January 2020 final workshop for a collaborative project to assess the potential effects of storm surge barriers on the Hudson River estuary.

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This report summarizes key findings from a 2019 workshop in New York that examined the potential ecological and physical impacts of constructing a surge barrier to protect the New York/New Jersey Harbor.

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This workshop report summarizes the March 2019 scoping session for a collaborative project to assess the potential effects of storm surge barriers on the Hudson River estuary.

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These risk assessments detail how climate could change in four New England municipalities over the 21st century, outlining each town's key climate change risks and potential adaptation options to address these risks. These assessments were produced as part of a 2012 Collaborative Research project.

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These stakeholder assessments capture opinions about climate change and adaptation held by diverse stakeholders in four New England municipalities as part of a 2012 Collaborative Research project.

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This document describes and synthesizes discussions and notes from an April 2018 workshop hosted by the New England reserves on salt marsh resilience.

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This document summarizes a tool developed by the NERRS to evaluate and compare the ability of tidal marshes to thrive as sea level rises.