This document provides guidance to those wishing to use the Climate Change Vulnerability Assessment Tool for Coastal Habitats ("CCVATCH") - a decision support tool which guides users through a series of questions to calculate numerical climate vulnerability scores for ecological habitats.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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These case studies highlight towns in coastal New Hampshire that used low impact development and green infrastructure strategies to reduce stormwater runoff and adapt to climate change.
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This interim report summarizes a community meeting hosted by a 2013 Collaborative Research project team in Exeter, New Hampshire about how to prepare the town for a changing climate.
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This document outlines the strategy developed by a 2012 Collaborative Research project team to achieve a complete community approach for mitigating the negative effects associated with increasing impervious cover and stormwater runoff in coastal New Hampshire.
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This fact sheet describes the advantages of incorporating climate change projections into the design of stormwater management systems and discusses the benefits of using green infrastructure and low impact development to adapt to climate change.
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This guide, developed as part of a 2013 Collaborative Research project, includes simple projects that homeowners can undertake to reduce pollution from their yards.
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This project overview describes a 2013 Collaborative Research project that developed a model climate adaptation plan for Exeter, New Hampshire to help decision-makers address climate change impacts.
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This project overview describes a 2013 Collaborative Research project that refined and piloted the Climate Change Vulnerability Assessment Tool for Coastal Habitats ("CCVATCH").
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This project overview describes a 2012 Collaborative Research project in which Great Bay Reserve and other partners helped New Hampshire communities adopt green infrastructure techniques to more effectively manage stormwater.
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This project overview describes a 2013 Collaborative Research project in which a diverse team collaborated to reduce the volume of polluted stormwater runoff in southeast coastal North Carolina.