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.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This 2018 catalyst project streamlined and enhanced mapping and decision support tools to help New Jersey coastal communities prepare for sea level rise and extreme storms.
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This needs assessment of conservation policy stakeholders in the Pacific Northwest identified data needs and barriers for potential blue carbon project partners.
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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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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 project overview describes a 2017 science transfer project that developed a risk communication training for reserves to build risk communication capacity in four coastal communities.
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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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This website contains data and files to run hydrodynamic modeling simulations for Coos estuary in southwestern Oregon.
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This project overview describes a 2018 Catalyst project led by Lisa Auermuller in which Jacques Cousteau National Estuarine Research Reserve and Rutgers University collaborate to streamline coastal resilience tools, data, and techniques in New Jersey.
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These coastal hazard risk communication training process agendas can be used to as a model help facilitators develop trainings for coastal decision makers in other communities.