This open-access article, published Geophysical Research Letters in 2020, uses turbidity observations to characterize estuary response following extreme discharge such as from storm-related flooding, which can be a proxy for sediment release from dam removals.
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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 article, submitted for publication to Earth Surface Processes and Landforms in 2020, describes findings from the Dams and Sediment in the Hudson (DaSH) project related to tidal wetland growth in the Hudson River estuary as a result of human activities. It presents sediment accumulation rates in marshes along the Hudson and reveals the rapid growth of marshes associated with anthropogenic structures.
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This article uses a hydrodynamic model of the Coos estuary in southwestern Orgeon to examine seasonal variability of salinity dynamics and estuarine exchange flow.
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This article discusses changes to the Coos estuary over the past 150 years, and their present and future impacts.
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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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This paper, published in Biological Conservation, describes an innovative approach developed by the NERRS to evaluate the ability of tidal marshes to thrive as sea levels rise.
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This article provides a comprehensive summary of what is known about the ecological functioning of the shore zone in freshwater ecosystems.
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This article, published as part of the Hudson River Sustainable Shorelines project in 2012, reports on an effort to document the biodiversity supported by different kinds of shore zones in the Hudson River Estuary.
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https://doi.org/10.1175/JPO-D-11-063.1This article, published in the Journal of Physical Oceanography in 2012, reports on an analysis of ice on tidal hydrodynamics in the Hudson River Estuary.
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This article, published in Hydrobiologia in 2014, reports on research into the ecology of wrack (organic matter that is washed onto shore) on different types of Hudson River shorelines (natural and engineered) as part of a 2010 Collaborative Research project.