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 |
---|---|---|---|---|---|---|
Sound of Islay Demonstration Tidal Array, Cable Route Environmental Information | ScottishPower Renewables | Report | Marine Energy, Tidal | Habitat Change | ||
Modeling Evaluation of Tidal Stream Energy and the Impacts of Energy Extraction on Hydrodynamics in the Taiwan Strait | Chen, W-B.; Liu, W-C.; Hsu, M-H. | Journal Article | Marine Energy, Tidal | Changes in Flow | Physical Environment | |
The Environmental Impact of a Wave Dragon Array Operating in the Black Sea | Diaconu, S.; Rusu, E. | Journal Article | Wave, Marine Energy | Changes in Flow | Physical Environment | |
EPRI Workshop on EMF and Aquatic Life | Electric Power Research Institute (EPRI) | Workshop Article | Marine Energy | EMF | Ecosystem Processes | |
Sediment-Generated Noise and Bed Stress in a Tidal Channel | Bassett, C.; Thomson, J.; Polagye, B. | Journal Article | Marine Energy, Tidal | Changes in Flow, Noise | ||
Modeling effects of a tidal barrage on water quality indicator distribution in the Severn Estuary | Gao, G.; Falconer, R.; Lin, B. | Journal Article | Tidal, Marine Energy | Changes in Flow | Sediment Transport, Physical Environment | |
Implications of Tidal Energy Extraction on Sedimentary Processes within Shallow Intertidal Environments | van Proosdij, D.; Mulligan, R.; Poirier, E.; et al. | Report | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
Impact of Tidal Energy Arrays Located in Regions of Tidal Asymmetry | Neill, S. | Workshop Article | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
ICES WGMBRED Report 2013: Report of the Working Group on Marine Benthal and Renewable Energy Developments (WGMBRED) | International Council for the Exploration of the Sea (ICES) | Report | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | Invertebrates | |
Symmetry: The Key to Diagnosing Propeller Strike Injuries in Sea Mammals | Byard, R.; Machado, A.; Woolford, L.; et al. | Journal Article | Marine Energy | Collision | Marine Mammals | |
Methodology for Tidal Turbine Representation in Ocean Circulation Model | Roc, T.; Conley, D.; Greaves, D. | Journal Article | Tidal, Marine Energy | Changes in Flow | Physical Environment | |
Individual Consistency in the Foraging Behaviour of Northern Gannets: Implications for Interactions with Offshore Renewable Energy Developments | Soanes, L.; Atkinson, P.; Gauvain, R.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | Birds, Seabirds | |
Wave farm impact based on realistic wave-WEC interaction | Carballo, R.; Iglesias, G. | Journal Article | Wave, Marine Energy | Changes in Flow | Physical Environment | |
Effects of Energy Extraction on Sediment Dynamics in Intertidal Ecosystems of the Minas Basin | van Proosdij, D.; O'Laughlin, C.; Milligan, T.; et al. | Report | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
Cross Coupling between Device Level CFD and Oceanographic Models Applied to Multiple TISECs in Minas Passage | Klaptocz, V.; Waung, T.; Crawford, C.; et al. | Report | Marine Energy, Tidal | Changes in Flow | ||
Modeling Tidal Stream Energy Extraction and its Effects on Transport Processes in a Tidal Channel and Bay System Using a Three-Dimensional Coastal Ocean Model | Yang, Z.; Wang, T.; Copping, A. | Journal Article | Tidal, Marine Energy | Changes in Flow | Physical Environment | |
The role of Marine Renewable Energy structures and biofouling communities in promoting self-sustaining populations of Non-Native Species | Macleod, A. | Thesis | Marine Energy, Wind Energy | Attraction, Changes in Flow, Habitat Change | Invertebrates | |
Evaluation of the nearshore impact of a hybrid wave-wind energy farm | Diaconu, S.; Onea, F.; Rusu, E. | Journal Article | Marine Energy, Wave, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment | |
Marine Scotland Letter: EMEC Benthic Habitat | Marine Scotland | Guidance | Marine Energy | Habitat Change | ||
Survival of the Stillest: Predator Avoidance in Shark Embryos | Kempster, R.; Hart, N.; Collin, S. | Journal Article | Marine Energy, Wind Energy | EMF | Fish, Demersal Fish | |
Modelling Foraging Strategies in High Energy Environments (FORSITE) | Chimienti, M.; Bartoń, K.; Scott, B.; et al. | Research Study | Marine Energy, Tidal | Collision, Habitat Change | Birds | |
Will Ocean Energy Harm Marine Ecosystems? | Hammar, L. | Research Study | Marine Energy, Ocean Current, Tidal, Wave | Changes in Flow, Collision, EMF, Habitat Change, Noise | Birds, Fish, Invertebrates, Marine Mammals, Physical Environment | |
The Ecology of Marine Tidal Race Environments and the Impact of Tidal Energy Development | Broadhurst, M. | Thesis | Marine Energy, Tidal | Habitat Change | Ecosystem Processes, Fish | |
Experimental Study of Scour around Support Structures of Model Marine Hydrokinetic Devices | Volpe, M. | Thesis | Marine Energy | Habitat Change | Ecosystem Processes, Physical Environment | |
Further Investigation of Wave Energy Converter Effects on Wave Fields: A Subsequent Modeling Sensitivity Study in Monterey Bay, CA | Magalen, J.; Chang, G.; Jones, C.; et al. | Report | Marine Energy, Wave | Changes in Flow | Physical Environment | |
Impacts of Tidal Energy Extraction on Sediment Dynamics in Minas Basin, Bay of Fundy, NS | Smith, P.; Bugden, G.; Wu, Y.; et al. | Report | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
Environmental Effects of Sediment Transport Alteration and Impacts on Protected Species: Edgartown Tidal Energy Project | Barrett, S.; Hughes, P.; Samimy, R. | Report | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport, Marine Mammals, Reptiles | |
Multibeam Imaging of the Environment Around Marine Renewable Energy Devices | Williamson, B.; Blondel, P. | Journal Article | Wave, Tidal, Marine Energy | Changes in Flow | Fish, Birds | |
Artificial Reef Effect in Relation to Offshore Renewable Energy Conversion: State of the Art | Langhamer, O. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Habitat Change | Ecosystem Processes, Fish, Physical Environment | |
Testing the Effectiveness of an Acoustic Deterrent for Grey Whales Along the Oregon Coast | Lagerquist, B.; Windsor, M.; Mate, B. | Report | Marine Energy | Collision, Entanglement | Marine Mammals, Cetaceans | |
Environmental Effects of Hydrokinetic Turbines on Fish: Desktop and Laboratory Flume Studies | Jacobson, P.; Amaral, S.; Castro-Santos, T.; et al. | Report | Marine Energy | Habitat Change, Collision, Avoidance, Attraction | Fish | |
Geophysical Surveys of the Wave Energy Test Site at MCBH, Kāneohe: Diver Surveys Site 2 | Sea Engineering Inc | Report | Marine Energy, Wave | Habitat Change | Ecosystem Processes, Invertebrates, Physical Environment | |
Stereo-Video Methodology for Quantitative Analysis of Fish-Turbine Interactions | Hammar, L.; Ehnberg, J.; Eggertsen, L.; et al. | Conference Paper | Marine Energy, Tidal | Collision | Fish | |
Effects of Ocean Thermal Energy Conversion Systems on Near and Far Field Seawater Properties - A Case Study for Hawaii | Jia, Y.; Nihous, G.; Richards, K. | Journal Article | OTEC, Marine Energy | Changes in Flow | Water Quality, Physical Environment | |
Impact of Wave Energy Converter (WEC) Array Operation on Nearshore Processes | Neill, S.; Iglesias, G. | Conference Paper | Marine Energy, Wave | Changes in Flow | Physical Environment, Sediment Transport | |
Modelling of the Impact of a Wave Farm on Nearshore Sediment Transport | Gonzalez, R.; Zou, Q.; Pan, S. | Conference Paper | Marine Energy, Wave | Changes in Flow | Physical Environment, Sediment Transport | |
Modeling the Physical and Biochemical Influence of Ocean Thermal Energy Conversion Plant | Grandelli, P.; Rocheleau, G.; Hamrick, J.; et al. | Report | OTEC, Marine Energy | Habitat Change | Water Quality, Physical Environment, Ecosystem Processes | |
Marine Animal Alert System Task 2.1.5.3 - Development of Monitoring Technologies Final Report | Carlson, T.; Deng, Z.; Myers, J.; et al. | Report | Tidal, Marine Energy | Collision | Marine Mammals | |
Introduction to the Special Issue of Continental Shelf Research on ‘The application of acoustics to sediment transport processes’ | Thorne, P.; Hay, A. | Journal Article | Marine Energy | Changes in Flow | Physical Environment, Sediment Transport | |
Assessing the Sensitivity of Seabird Populations to Adverse Effects from Tidal Stream Turbines and Wave Energy Devices | Furness, R.; Wade, H.; Robbins, A.; et al. | Journal Article | Marine Energy, Tidal, Wave | Attraction, Collision, Displacement, Habitat Change | Birds, Seabirds | |
SNL-EFDC Simulations of MHK-Related Changes to Tidal Range and Flushing | Roberts, J.; James, S. | Report | Marine Energy | Changes in Flow | ||
SNL-EFDC Model Application to Cobscook Bay, ME | Roberts, J.; James, S. | Report | Tidal, Marine Energy | Changes in Flow | Physical Environment | |
SNL-EFDC Model Application to Scotlandville Bend, Mississippi River | Barco, J.; Roberts, J.; Johnson, E.; et al. | Report | Riverine, Marine Energy | Changes in Flow | Sediment Transport, Physical Environment | |
Assessment of array shape of tidal stream turbines on hydro-environmental impacts and power output | Ahmadian, R.; Falconer, R. | Journal Article | Tidal, Marine Energy | Changes in Flow | ||
Potential Interactions between Diadromous Fishes of U.K. Conservation Importance and the Electromagnetic Fields and Subsea Noise from Marine Renewable Energy Developments | Gill, A.; Bartlett, M.; Thomsen, F. | Journal Article | Marine Energy | EMF, Noise | Fish, Demersal Fish, Pelagic Fish | |
Building Capacity for Marine Hydrokinetic Energy: Atlas of Potential Synergistic and Conflicting Environmental, Ecological, and Human Use Considerations | Dubbs, L.; Voss, C.; Von Korff, B.; et al. | Report | Marine Energy, Ocean Current, Tidal, Wave | Chemicals, Collision, EMF, Entanglement, Habitat Change, Noise | Birds, Fish, Marine Mammals, Reptiles, Human Dimensions | |
Annex I: Movements and Diving Behaviour of Juvenile Grey Seals in Areas of High Tidal Energy | Thompson, D. | Report | Marine Energy, Tidal | Collision | Marine Mammals, Pinnipeds | |
Assessing the Far Field Effects of Tidal Power Extraction on the Bay of Fundy, Gulf of Maine and Scotian Shelf | Sheng, J.; Thompson, K.; Hill, P.; et al. | Report | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport, Water Quality | |
Effects of Electromagnetic Fields on Fish and Invertebrates Task 2.1.3: Effects on Aquatic Organisms Fiscal Year 2011 Progress Report | Woodruff, D.; Schultz, I.; Marshall, K.; et al. | Report | Marine Energy | EMF | Fish, Invertebrates | |
Sub-Mesoscale Flow Regime Modeling and the Influence of Energy Extraction at a Tidal Energy Site | Harris, R. | Research Study | Tidal, Marine Energy | Changes in Flow |
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