The Knowledge Base provides access to documents and information about the environmental effects of marine renewable energy, supporting the OES-Environmental initiative. Relevant documents from around the world are compiled into a user-friendly table that displays all content available in Tethys. Results can be narrowed using the keyword filters on the right, or with search terms entered in the text box, including targeted searches (e.g., org:DOE, author:copping). Content may also be sorted alphabetically by clicking on column headers. Some entries will appear on the next page.
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Title | Author | Date Sort ascending | Content Type | Technology | Stressor | Receptor |
---|---|---|---|---|---|---|
Understanding the Value of Strategic Evidence Surveys to Support the Tidal Steam Energy Sector in Wales | Wood, D.; Griffith, A.; Basic, T.; et al. | Report | Marine Energy, Tidal | Birds, Fish, Marine Mammals | ||
Triton Field Trials - Changes in Habitats, a Literature Review of Monitoring Technologies | Hemery, L.; Mackereth, K.; Tugade, L. | Report | Marine Energy | Habitat Change | ||
ORJIP Ocean Energy Information Note: Encounters of Marine Animals with Mooring Systems and Subsea Cables | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Entanglement | Fish, Marine Mammals | |
ORJIP Ocean Energy Information Note: Changes in Benthic and Pelagic Habitats caused by Marine Renewable Energy Devices | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Habitat Change | Physical Environment | |
ORJIP Ocean Energy Information Note: Underwater Noise | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Noise | Fish, Marine Mammals | |
ORJIP Ocean Energy Information Note: Background Information | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Human Dimensions, Legal & Policy | ||
A life cycle assessment comparison of materials for a tidal stream turbine blade | Walker, S.; Thies, P. | Journal Article | Marine Energy, Tidal | Human Dimensions, Life Cycle Assessment | ||
ORJIP Ocean Energy Information Note: Collision Risk | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Collision | Birds, Seabirds, Fish, Marine Mammals | |
ORJIP Ocean Energy Information Note: Electromagnetic Field Emissions | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | EMF | Fish, Invertebrates, Marine Mammals, Reptiles, Sea Turtles | |
ORJIP Ocean Energy Information Note: Cumulative Impact Assessment | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | |||
ORJIP Ocean Energy Information Note: Changes in Oceanographic Systems | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Changes in Flow | Physical Environment, Sediment Transport, Water Quality | |
ORJIP Ocean Energy Information Note: Environmental Monitoring Technologies and Techniques for Detecting Interactions with Marine Animals | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Collision | Birds, Seabirds, Fish, Marine Mammals | |
ORJIP Ocean Energy Information Note: Data Transferability | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Human Dimensions, Legal & Policy | ||
Field Observations of Scour Behavior around an Oscillating Water Column Wave Energy Converter | Lancaster, O.; Cossu, R.; Heatherington, C.; et al. | Journal Article | Marine Energy, Wave | Changes in Flow | Physical Environment, Sediment Transport | |
Hydrodynamic and Morphodynamic Influences from Ocean Current Energy Conversion Sites in the South–Southeastern Brazilian Inner Shelf | de Paula Kirinus, E.; Oleinik, P.; Marques, W. | Journal Article | Marine Energy, Ocean Current | Changes in Flow | Physical Environment, Sediment Transport | |
Socioeconomic Impacts of Wave Energy Knowledge and Service Providers to Oregon | Garrett, J.; Thompson, P.; Conway, F. | Report | Marine Energy, Wave | Human Dimensions, Social & Economic Data, Stakeholder Engagement | ||
Riding the wave: Challenges and opportunities for marine renewable energies in Canada’s energy transition | Forrest, D.; Li, X.; Aviles, M.; et al. | Report | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | |||
It Is a Balancing Act: The Interface of Scientific Evidence and Policy in Support of Effective Marine Environmental Management | Lonsdale, J.; Gill, A.; Alliji, K.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Human Dimensions, Legal & Policy | ||
Triton Field Trials: Promoting Consistent Environmental Monitoring Methodologies for Marine Energy Sites | Eaves, S.; Staines, G.; Harker-Klimes, G.; et al. | Journal Article | Marine Energy | Collision, EMF, Habitat Change, Noise | Human Dimensions | |
Use of Our Future Seas: Relevance of Spatial and Temporal Scale for Physical and Biological Indicators | Trifonova, N.; Scott, B.; De Dominicis, M.; et al. | Journal Article | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind | Habitat Change | Ecosystem Processes, Physical Environment | |
The Potential of Wave Energy Conversion to Mitigate Coastal Erosion from Hurricanes | Ozkan, C.; Mayo, T.; Passeri, D. | Journal Article | Marine Energy, Wave | Changes in Flow | Human Dimensions | |
Sector Locational Guidance: Enabling Evidence for Sustainable Development Tidal Stream Energy | Welsh Government | Report | Marine Energy, Tidal | Birds, Fish, Marine Mammals, Physical Environment, Human Dimensions, Social & Economic Data, Stakeholder Engagement | ||
Sector Locational Guidance: Enabling Evidence for Sustainable Development Wave Energy | Welsh Government | Report | Marine Energy, Wave | Birds, Fish, Marine Mammals, Physical Environment, Human Dimensions, Social & Economic Data, Stakeholder Engagement | ||
A Framework for Effective Science Communication and Outreach Strategies and Dissemination of Research Findings for Marine Energy Projects | Gunn, C.; Amerson, A.; Adkisson, K.; et al. | Journal Article | Marine Energy | Human Dimensions | ||
SafeWAVE Deliverable 4.4 Use cases and profiles | Leitão, J.; Cardoso, S.; Santos, H. | Report | Marine Energy, Wave | Noise | Birds, Invertebrates, Human Dimensions, Environmental Impact Assessment | |
What’s in My Toolkit? A Review of Technologies for Assessing Changes in Habitats Caused by Marine Energy Development | Hemery, L.; Mackereth, K.; Tugade, L. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | ||
A Review of Modeling Approaches for Understanding and Monitoring the Environmental Effects of Marine Renewable Energy | Buenau, K.; Garavelli, L.; Hemery, L.; et al. | Journal Article | Marine Energy, Ocean Current, Tidal, Wave | Changes in Flow, Collision, Displacement, EMF, Habitat Change, Noise | ||
Stressor-Specific Guidance Document: Oceanographic Systems | OES-Environmental | Report | Marine Energy | Changes in Flow | ||
Stressor-Specific Guidance Document: Habitat Change | OES-Environmental | Report | Marine Energy | Habitat Change | ||
Wave Energy Roadmap - Realising the Potential of Wave Energy in the next 10 to 15 years | Supergen Offshore Renewable Energy Hub | Report | Marine Energy, Wave | |||
Marine Energy in the Dutch North Sea White Paper: Potential benefits to the Dutch energy system | Tocardo B.V. | Guidance | Marine Energy | Human Dimensions, Legal & Policy, Marine Spatial Planning | ||
Grid connection and system services of a wave power plant - a case study | Vrana, T.; Akerberg, J.; Flynn, D.; et al. | Journal Article | Marine Energy, Wave | |||
NREL Programs Channel Students Toward the Future Water Power Workforce | National Renewable Energy Laboratory (NREL) | Report | Marine Energy, Tidal, Wave | Human Dimensions, Social & Economic Data | ||
SafeWave Deliverable 5.2 Risk-Based Approaches and Adaptive Management | Verling, E.; O'Hagan, A. | Report | Marine Energy, Wave | Human Dimensions | ||
Country-Specific Guidance Document: China | OES-Environmental | Report | Marine Energy | |||
Biological Consequences of Marine Energy Development on Marine Animals | Hemery, L.; Copping, A.; Overhus, D. | Journal Article | Marine Energy, Tidal | Changes in Flow, Collision, EMF, Entanglement, Habitat Change, Noise | Seabirds, Pelagic Fish, Invertebrates, Cetaceans, Pinnipeds | |
Managing stakeholder perception and engagement for marine energy transitions in a decarbonising world | Lange, M.; Cummins, V. | Journal Article | Marine Energy, Wind Energy | Human Dimensions, Stakeholder Engagement | ||
Harbour porpoise (Phocoena phocoena) presence is reduced during tidal turbine operation | Palmer, L.; Gillespie, D.; Macaulay, J.; et al. | Journal Article | Marine Energy, Tidal | Avoidance, Collision | Marine Mammals, Cetaceans | |
Blue economy and the total environment: Mapping the interface | Lee, K.; Noh, J.; Lee, J.; et al. | Journal Article | Marine Energy | Human Dimensions, Legal & Policy, Marine Spatial Planning | ||
A review of tidal energy—Resource, feedbacks, and environmental interactions | Neill, S.; Haas, K.; Thiébot, J.; et al. | Journal Article | Marine Energy, Tidal | Physical Environment | ||
Country-Specific Guidance Document: Japan | OES-Environmental | Report | Marine Energy | |||
Bourne Tidal Test Site Draft Pilot License Application | Barrett, S. | Report | Marine Energy, Tidal | Human Dimensions, Environmental Impact Assessment | ||
A new seabed mobility index for the Irish Sea: Modelling seabed shear stress and classifying sediment mobilisation to help predict erosion, deposition, and sediment distribution | Coughlan, M.; Guerrini, M.; Creane, S.; et al. | Journal Article | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment, Sediment Transport | |
Environmental Information for Siting and Operation of Floating Tidal Turbines in U.S. Waters | Copping, A.; Garavelli, L.; Overhus, D.; et al. | Report | Marine Energy, Tidal | Collision, Displacement, EMF, Entanglement, Habitat Change, Noise | Birds, Seabirds, Fish, Marine Mammals | |
The challenges of engaging island communities: Lessons on renewable energy from a review of 17 case studies | Kallis, G.; Stephanides, P.; Bailey, E.; et al. | Journal Article | Marine Energy, Wind Energy | Human Dimensions, Stakeholder Engagement | ||
Cost Efficiency of Environmental DNA as Compared to Conventional Methods for Biodiversity Monitoring Purposes at Marine Energy Sites | Fu, M.; Hemery, L.; Sather, N. | Report | Marine Energy, Ocean Current, Tidal, Wave | Habitat Change | Human Dimensions, Social & Economic Data | |
The rebirth and eco-friendly energy production of an artificial lake: A case study on the tidal power in South Korea | Park, E.; Lee, T. | Journal Article | Marine Energy, Tidal | Ecosystem Processes, Physical Environment, Water Quality | ||
Automatic Segregation of Pelagic Habitats | Plonus, R-M.; Vogl, S.; Floeter, J. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Habitat Change | Physical Environment, Human Dimensions | |
Renewable electricity generation for off grid remote communities; Life Cycle Assessment Study in Alaska, USA | McCallum, C.; Kumar, N.; Curry, R.; et al. | Journal Article | Marine Energy, Riverine | Human Dimensions, Life Cycle Assessment | ||
Bayesian network modelling provides spatial and temporal understanding of ecosystem dynamics within shallow shelf seas | Trifonova, N.; Scott, B.; De Dominicis, M.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Ecosystem Processes, Physical Environment, Fish, Marine Mammals, Human Dimensions |
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