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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 12
Multimedia |
Project lead Karina Heim gives a short introduction to "Greener Shores: Bringing Plant-scale Knowledge to Shoreline Habitat Practitioners in the Lake Superior (Gichigami) Basin."
Multimedia |

This story map explores how boat wakes affect coastal vulnerability in small estuary channels in Florida's Atlantic Intracoastal Waterway.

Data |

This data resource includes marsh vegetation, water level data and modeling outputs from a project that examined how Piermont Marsh in New York buffers the impacts of storms.

Multimedia |

This story map explains mangrove habitat change at the Rookery Bay National Estuarine Research Reserve from 2010-2018, illustrating mangrove damage and recovery from Hurricane Irma.

Data |
About this resource

Degradation of coastal habitats has led to major declines in oyster reefs and coastal wetlands. Coastal restoration efforts are critical to restoring these habitats, but they often include little to no monitoring and evaluation of success.

Data |

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.

Multimedia |

This video describes a 2015 Collaborative Research project at the Guana Tolomato Matanzas Reserve where researchers installed a new living shoreline design to protect shorelines from boat wakes.

Multimedia |

This webinar, part of NOAA and the U.S. Fish and Wildlife Service's Restoration Webinar Series, describes how the ACE Basin Reserve expanded living shorelines within the reserve to reduce climate change vulnerability.

Multimedia |

This infographic was developed by the Buffer Options for the Bay project and depicts the minimum recommended buffer widths for various buffer functions.

Data |

This model was developed by the Hudson River Sustainable Shorelines project team and can be used to understand the energy regimes impacting shorelines and to help identify suitable shoreline stabilization alternatives for sites along the Hudson River.