These datasets and statistical analysis codes model surge barrier effects on the Hudson River estuary, developed as part of the 2018 catalyst project Assessing the Physical Effects of Storm Surge Barriers on the Harbor and Hudson River Estuary.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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Slides and a video recording are available from a final stakholder meeting for a study that examined the buffering capacity of a shoreline marsh along Hudson River estuary.
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This webinar for decision makers presents findings from a 2017 collaborative research project that developed a conceptual model for groundwater discharge and recharge on the Kenai Peninsula, Alaska.
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These sediment and hydrodynamic data were collected as part of the 2016-2020 collaborative research project Improved Understanding of Sediment Dynamics for the Coos Estuary that produced a new bathymetric dataset for Coos Bay and a hydrodynamic model characterizing sediment distribution and circulation in the estuary.
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This webinar, conducted June 30, 2020, presents research findings from the 2018-2020 catalyst project Assessing the Physical Effects of Storm Surge Barriers on the Harbor and Hudson River Estuary.
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This collection of videos uses a hydrodynamic model to show salinity changes in the Coos estuary in different geographies and seasons.
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These multimedia outreach and communication tools were developed by the Kachemak Bay National Estuarine Research Reserve and its partners in support of a project to advance peatland blue carbon projects in the Kenai Lowlands, Alaska.
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This story map about salmon, groundwater, and people in the Kenai Lowlands, Alaska can help local stakeholders better understand groundwater dynamics.
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These outreach and communications tools, including a one-page factsheet and presentation slides, discuss the Alaska Fisheries Resilience Index.
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These scientific illustrations show groundwater flows, seeps, and springs. They were created as part of a 2017 Collaborative Research project that developed a conceptional model for groundwater discharge and recharge on the Kenai Peninsula, Alaska.