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 | Content Type | Technology | Stressor | Receptor Sort descending |
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Hydrokinetic energy conversion: A global riverine perspective | Ridgill, M.; Lewis, M.; Robins, P. | Journal Article | Marine Energy, Riverine | |||
Benefits of real-time object detection for environmental monitoring of marine energy devices | Murphy, P.; Joslin, J.; Scott, M. | Presentation | Marine Energy | |||
Implementation of the Spatial Environmental Assessment Toolkit | McWilliams, S.; Jones, C.; Roberts, J.; et al. | Presentation | Marine Energy, Riverine, Tidal, Wave | Habitat Change, Noise | ||
Acoustic Characterization around the CalWave Wave Energy Converter | Raghukumar, K.; Chang, G.; Spada, F.; et al. | Presentation | Marine Energy, Wave | Noise | ||
Taking a Broader Look at Environmental and Ecological Effects of Marine Energy Development | Hemery, L.; Copping, A.; Hasselman, D.; et al. | Presentation | Marine Energy | |||
2021-2022 California Current Ecosystem Status Report | Harvey, C.; Garfield, T.; Williams, G.; et al. | Report | ||||
Introduction to Marine Energy | National Renewable Energy Laboratory (NREL) | Video | Marine Energy, Tidal, Wave | |||
Tapping the ocean’s large renewable energy sources | World Ocean Intiative | Magazine Article | Marine Energy, Wind Energy | |||
Entanglement Evidence Base | OES-Environmental | Summary | Marine Energy, Wind Energy | Entanglement | ||
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 | |||
Collision Risk Evidence Base | OES-Environmental | Summary | Marine Energy, Ocean Current, Tidal | Collision | ||
Quantifying Background Magnetic Fields at Marine Energy Sites: Challenges and Recommendations | Grear, M.; McVey, J.; Cotter, E.; et al. | Journal Article | Marine Energy | EMF | ||
Triton Field Trials - Changes in Habitats, a Literature Review of Monitoring Technologies | Hemery, L.; Mackereth, K.; Tugade, L. | Report | Marine Energy | Habitat Change | ||
Sustainable development of renewable energy integrated power sector: Trends, environmental impacts, and recent challenges | Al-Shetwi, A. | Journal Article | Marine Energy, Wind Energy | |||
Acoustic characteristics of a horizontal axis micro hydrokinetic turbine | Wang, X.; Hu, Z.; Yan, Y.; et al. | Journal Article | Marine Energy, Riverine, Tidal | Noise | ||
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 | ||
Analysis of Characteristics of Tide and Tidal Current in the east China Seas | Wang, N.; Gao, Y.; Guo, H.; et al. | Conference Paper | Marine Energy, Tidal | |||
Update on NREL’s 2020 Offshore Wind Resource Assessment for the California Pacific Outer Continental Shelf | Bodini, N.; Rybchuk, A.; Optis, M.; et al. | Report | Wind Energy, Floating Offshore Wind | |||
UK Ocean Energy Review 2021 | University of Edinburgh; Jeffrey, H.; Grattan, K. | Report | Marine Energy, Tidal, Wave | |||
Inspiring Tomorrow's Water Power Workforce to Lead the Clean Energy Revolution | National Renewable Energy Laboratory (NREL) | Guidance | Marine Energy | |||
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 Renewable Energy and the Environment: A Coloring Book | OES-Environmental | Book | Marine Energy | |||
Study on Underwater Target Tracking Technology Based on an LSTM–Kalman Filtering Method | Wang, M.; Xu, C.; Zhou, C.; et al. | Journal Article | Collision | |||
A brief overview of current approaches for underwater sound analysis and reporting | van Geel, N.; Risch, D.; Wittich, A. | Journal Article | Noise | |||
Country-Specific Guidance Document: Spain | OES-Environmental | Report | Marine Energy | |||
Protected Species Observers | NOAA Fisheries | Website | ||||
ORJIP Ocean Energy Information Note: Cumulative Impact Assessment | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | |||
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 | ||
MRE Regulator Survey Report: Australia | Rose, D.; Freeman, M. | Report | Marine Energy, Tidal, Wave | |||
Underwater Noise Measurements around a Tidal Turbine in a Busy Port Setting | Haxel, J.; Zang, X.; Martinez, J.; et al. | Journal Article | Marine Energy, Tidal | Noise | ||
SeaRAY Autonomous Offshore Power System 2022 Application Demonstration | C-Power | Project Site | Marine Energy, Wave | |||
Eukaryotic diversity of marine biofouling from coastal to offshore areas | Portas, A.; Quillienn, N.; Culioli, J.; et al. | Journal Article | Marine Energy | Chemicals | Invertebrates | |
Multi-use platforms at sea: A sustainable solution for aquaculture and biodiversity | Demmer, J.; Lewis, M.; Neill, S. | Book Chapter | Marine Energy, Tidal, Wave | Invertebrates, Human Dimensions, Fisheries | ||
Seabed morphology and bed shear stress predict temperate reef habitats in a high energy marine region | Jackson-Bué, T.; Williams, G.; Whitton, T.; et al. | Journal Article | Marine Energy, Tidal | Invertebrates, Physical Environment | ||
Influence of coating type, colour, and deployment timing on biofouling by native and non-native species in a marine renewable energy context | Nall, C.; Schläppy, M.; Cottier-Cook, E.; et al. | Journal Article | Marine Energy | Attraction | Invertebrates | |
Supplemental Data Regarding the Behavioral Response of Rock Crabs to the EMF of Subsea Cables and Potential Impact to Fisheries | Williams, J.; Jaco, E.; Scholz, Z.; et al. | Report | Marine Energy, Wind Energy | EMF | Invertebrates | |
Can artificial magnetic fields alter the functional role of the blue mussel, Mytilus edulis? | Albert, L.; Maire, O.; Olivier, F.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | EMF | Invertebrates | |
Satellite-Based Lagrangian Model Reveals How Upwelling and Oceanic Circulation Shape Krill Hotspots in the California Current System | Messie, M.; Sancho-Gallegos, D.; Fiechter, J.; et al. | Journal Article | Invertebrates | |||
Establishing an Agenda for Biofouling Research for the Development of the Marine Renewable Energy Industry in Indonesia | Iswadi, A.; Porter, J.; Bell, M.; et al. | Journal Article | Marine Energy | Attraction | Invertebrates | |
Conceptualisation of multiple impacts interacting in the marine environment using marine infrastructure as an example | Komyakova, V.; Jaffrés, J.; Strain, E.; et al. | Journal Article | Marine Energy, Wind Energy | Attraction | Invertebrates | |
Commercial cuttlefish exposed to noise from offshore windmill construction show short-range acoustic trauma | Solé, M.; De Vreese, S.; Fortuno, J-M.; et al. | Journal Article | Marine Energy, Wind Energy | Noise | Invertebrates | |
The Effects of Anthropogenic Electromagnetic Fields (EMF) on the Early Development of Two Commercially Important Crustaceans, European Lobster, Homarus gammarus (L.) and Edible Crab, Cancer pagurus (L.) | Harsanyi, P.; Scott, K.; Easton, B.; et al. | Journal Article | EMF | Invertebrates | ||
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 | ||
Clean Energy from the Ocean: Measuring the Environmental Footprint of Devices | Rose, D.; Gunn, C.; Hemery, L. | Magazine Article | Marine Energy | Changes in Flow, Collision, EMF, Entanglement, Habitat Change, Noise | Birds, Fish, Invertebrates, Marine Mammals, Physical Environment, Human Dimensions | |
Environmental impacts on marine energy systems: collision risks for marine animals and priority species for monitoring in Brazil | Silva, C.; Dagola, P.; Moreira, M.; et al. | Journal Article | Marine Energy, Tidal, Wave | Collision | Birds, Fish, Marine Mammals | |
To fly or not to fly? Comparing vantage point and uncrewed aerial vehicle surveys for assessments of seabird abundance and fine-scale distribution | Costagliola-Ray, M.; Lieber, L.; Nimmo-Smith, A.; et al. | Journal Article | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind | Birds, Seabirds | ||
Wave-Energy Devices Might Affect the Natural Environment: Scientists plan research to better understand effects | Oregon State University; Pacific Marine Energy Center (PMEC); Northwest National Marine Renewable Energy Center (NNMREC); et al. | Magazine Article | Marine Energy, Wave | EMF, Entanglement, Noise | Birds, Seabirds, Fish, Marine Mammals | |
Potential climate-driven changes to seabird demography: implications for assessments of marine renewable energy development | Searle, K.; Butler, A.; Waggitt, J.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Displacement | Birds, Seabirds, Human Dimensions, Climate Change |
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