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 |
---|---|---|---|---|---|---|
Feasibility Analysis: Using Artificial Intelligence to Match Photographed Lateral Ridges of Gray Whales | Holmberg, J.; Parham, J.; Blount, A. | Report | Marine Mammals, Cetaceans | |||
Research on the environmental impact of tidal power generation in China | Ma, Z.; Li, B.; Liu, Y. | Journal Article | Marine Energy, Tidal | Ecosystem Processes, Physical Environment, Human Dimensions, Legal & Policy | ||
Marine spatial planning on Crete Island, Greece: methodological and implementation issues | Rempis, N.; Tsilimigkas, G. | Journal Article | Human Dimensions, Marine Spatial Planning | |||
Information Flow to Increase Support for Tidal Energy Development in Remote Islands of a Developing Country: Agent-Based Simulation of Information Flow in Flores Timur Regency, Indonesia | Ramachandran, R.; Kularathna, A.; Matsuda, H.; et al. | Journal Article | Marine Energy, Tidal | Human Dimensions, Social & Economic Data, Stakeholder Engagement | ||
Sustainable energy planning for remote islands and the waste legacy from renewable energy infrastructure deployment | Kouloumpis, V.; Yan, X. | Journal Article | Marine Energy, Tidal, Wind Energy, Fixed Offshore Wind | Chemicals, Habitat Change | Physical Environment, Water Quality, Human Dimensions, Life Cycle Assessment, Social & Economic Data | |
Exposure to Electromagnetic Fields (EMF) from Submarine Power Cables Can Trigger Strength-Dependent Behavioural and Physiological Responses in Edible Crab, Cancer pagurus (L.) | Scott, K.; Harsanyi, P.; Easton, B.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | EMF | Invertebrates | |
State of the Sector 2021: Economic Benefits for Wales | Marine Energy Wales | Report | Marine Energy, Wind Energy, Floating Offshore Wind | Human Dimensions, Legal & Policy, Social & Economic Data | ||
Review of monitoring methodologies and technologies, suitable for deployment in high energy environments in Wales, to monitor animal interactions with tidal energy devices | Clarke, D.; Bertelli, C.; Cole, E.; et al. | Report | Marine Energy, Tidal | Birds, Seabirds, Fish, Marine Mammals | ||
Map-like use of Earth’s magnetic field in sharks | Keller, B.; Putnam, N.; Grubbs, R.; et al. | Journal Article | EMF | Fish, Demersal Fish, Pelagic Fish | ||
Sea Lice Are Sensitive to Low Frequency Sounds | Solé, M.; Lenoir, M.; Fortuno, J-M.; et al. | Journal Article | Marine Energy, Wind Energy | Noise | Invertebrates, Human Dimensions, Fisheries | |
Water quality modeling in subtropical shallow waters to predict environmental impacts of ocean thermal energy conversion | Oshimi, R.; Tabeta, S.; Mizuno, K. | Journal Article | Marine Energy, OTEC | Physical Environment, Water Quality | ||
Tidal stream use by black guillemots Cepphus grylle in relation to a marine renewable energy development | Johnston, D.; Furness, R.; Robbins, A.; et al. | Journal Article | Marine Energy, Tidal | Collision, Habitat Change | Birds, Seabirds | |
WESE Deliverable 2.2 Monitoring of Electromagnetic fields | Chainho, P.; Bald, J. | Report | Marine Energy, Wave | EMF | ||
WESE Deliverable 4.3 Feasibility for the implementation of wave energy licensing based on a risk-based approach and adaptive management in Spain and Portugal | Apolonia, M.; Cruz, E.; Simas, T.; et al. | Report | Marine Energy, Wave | Human Dimensions | ||
MRE Regulator Survey Report: Japan | Rose, D.; Freeman, M. | Report | Marine Energy | |||
Sustainable co-location solutions for offshore wind farms and fisheries need to account for socio-ecological trade-offs | Stelzenmüller, V.; Gimpel, A.; Haslob, H.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Fisheries, Marine Spatial Planning, Social & Economic Data | ||
Renewable energy production in a Mexican biosphere reserve: Assessing the potential using a multidisciplinary approach | Wojtarowski, A.; Martinez, M.; Silva, R.; et al. | Journal Article | Marine Energy, Salinity Gradient | Birds, Ecosystem Processes, Invertebrates, Human Dimensions, Social & Economic Data | ||
Stressor-Specific Guidance Document: Underwater Noise | OES-Environmental | Report | Marine Energy | Noise | ||
Stressor-Specific Guidance Document: Electromagnetic Fields | OES-Environmental | Report | Marine Energy | EMF | ||
Unbalanced sediment transport by tidal power generation in Lake Sihwa | Kim, J.; Ha, H.; Woo, S-B.; et al. | Journal Article | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
Passport to the oceans of the future: Delivering marine energy with science linked to policy | Slater, A-M. | Workshop Article | Marine Energy, Wind Energy | Human Dimensions, Legal & Policy | ||
In search of social sustainability in marine spatial planning: A review of scientific literature published 2005–2020 | Gilek, M.; Armoskaite, A.; Gee, K.; et al. | Journal Article | Human Dimensions, Marine Spatial Planning, Social & Economic Data | |||
Introduction to Ocean Renewable Energy | Neill, S. | Journal Article | Marine Energy | Human Dimensions | ||
Modelling Morphological Changes and Migration of Large Sand Waves in a Very Energetic Tidal Environment: Banks Strait, Australia | Auguste, C.; Marsh, P.; Nader, J.; et al. | Journal Article | Marine Energy, Tidal | Physical Environment, Sediment Transport | ||
Birds of Conservation Concern 2021 | US Fish and Wildlife Service (USFWS) | Report | Birds | |||
Research on buoy–chain–sprocket wave energy capture technology | Ji, F.; Wu, D.; Li, Y.; et al. | Journal Article | Marine Energy, Wave | Human Dimensions | ||
Environmental Issues for Offshore Renewable Energy | Wolf, J.; De Dominicis, M.; Lewis, M.; et al. | Journal Article | Marine Energy, Wind Energy | Human Dimensions | ||
Working Group on Marine Benthal and Renewable Energy Developments (WGMBRED) | ICES Working Group on Marine Renewable Energy (WGMRE) | Report | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | Ecosystem Processes, Fish, Invertebrates, Physical Environment, Human Dimensions, Fisheries | |
WESE Deliverable 3.1 EMF Modelling | Chainho, P.; Bald, J. | Report | Marine Energy, Wave | EMF | ||
WESE Deliverable 3.2 Acoustic Modelling | Felis, I.; Madrid, E.; Bald, J. | Report | Marine Energy, Wave | Noise | ||
Seagrass Posidonia is impaired by human-generated noise | Solé, M.; Lenoir, M.; Durfort, M.; et al. | Journal Article | Marine Energy, Wind Energy | Noise | ||
Combining acoustic tracking and hydrodynamic modelling to study migratory behaviour of Atlantic salmon (Salmo salar) smolts on entry into high-energy coastal waters | McIlvenny, J.; Youngson, A.; Williamson, B.; et al. | Journal Article | Fish | |||
Mocean Wave Energy Converter: Blue Horizon | Mocean Energy | Project Site | Marine Energy, Wave | |||
Relative Performance of Surface vs. Bottom-Mounted Hydrophones in a Tidal Channel | Hasselman, D.; Boucher, T.; Douglas, J.; et al. | Report | Marine Energy, Tidal | Noise | Marine Mammals, Cetaceans | |
A systemic view of potential environmental impacts of ocean energy production | Martinez, M.; Vázquez, G.; Pérez-Maqueo O.; et al. | Journal Article | Marine Energy, Ocean Current, OTEC, Salinity Gradient, Tidal, Wave | Collision, Habitat Change, Noise | Birds, Physical Environment, Fish, Marine Mammals | |
Development and calibration of a high-resolution model for the Gulf of Mexico, Puerto Rico, and the U.S. Virgin Islands: Implication for wave energy resource characterization | Allahdadi, M,; He, R.; Ahn, S.; et al. | Journal Article | Marine Energy, Wave | Physical Environment, Human Dimensions | ||
Variability of sediment processes around a tidal farm in a theoretical channel | Auguste, C.; Nader, J.; Marsh, P.; et al. | Journal Article | Marine Energy, Tidal | Changes in Flow | Physical Environment, Sediment Transport | |
Wave energy in the UK: Status review and future perspectives | Jin, S.; Greaves, D. | Journal Article | Marine Energy, Wave | Human Dimensions, Legal & Policy | ||
Guidance Documents: Background Document | OES-Environmental | Report | Marine Energy | |||
NEFMC Research Priorities and Data Needs for 2021-2025 | New England Fishery Management Council | Report | Human Dimensions | |||
Final Report of the Hawaiian Islands Cetacean and Ecosystem Assessment Surveys (HICEAS) 2017 and 2020: A PacMAPPS Study | Oleson, E. | Report | Marine Mammals, Cetaceans | |||
Developing a simulation-based approach to Collision Risk of Tidal Energy Converters and Marine Wildlife | Horne, N. | Thesis | Marine Energy | Collision | ||
What international framework to support the sustainable exploitation of marine energy and mineral resources? | Willemez, A. | Book Chapter | Marine Energy | Ecosystem Processes, Physical Environment, Human Dimensions | ||
A call to assess the impacts of electromagnetic fields from subsea cables on the movement ecology of marine migrants | Klimley, A.; Putnam, N.; Keller, B.; et al. | Journal Article | Marine Energy, Wind Energy | EMF | Fish, Invertebrates | |
Acoustic risk balancing by marine mammals: anthropogenic noise can influence the foraging decisions by seals | Hastie, G.; Lepper, P.; McKnight, C.; et al. | Journal Article | Marine Energy, Tidal | Avoidance, Noise | Marine Mammals, Pinnipeds | |
Characterisation of the Potential Impacts of Subsea Power Cables Associated with Offshore Renewable Energy Projects | Taormina, B.; Quillienn, N.; Lejart, M.; et al. | Report | Marine Energy, Wind Energy, Fixed Offshore Wind | EMF, Habitat Change | Physical Environment, Fish, Invertebrates | |
Life cycle assessment of a wave energy converter: Uncertainties and sensitivities | Zhai, Q.; Li, T.; Liu, Y. | Journal Article | Marine Energy, Wave | Human Dimensions, Life Cycle Assessment | ||
A modelling evaluation of electromagnetic fields emitted by buried subsea power cables and encountered by marine animals: considerations for marine renewable energy development | Hutchison, Z.; Gill, A.; Sigray, P.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | EMF | Fish, Invertebrates | |
Assessment of the Tidal Current Energy Resources and the Hydrodynamic Impacts of Energy Extraction at the PuHu Channel in Zhoushan Archipelago, China | Wu, H.; Yu, H.; Fang, Y.; et al. | Journal Article | Marine Energy, Tidal | Changes in Flow | Physical Environment | |
The Expected Impact of Marine Energy Farms Operating in Island Environments with Mild Wave Energy Resources - A Case Study in the Mediterranean Sea | Rusu, L.; Onea, F.; Rusu, E. | Journal Article | Marine Energy, Wave, Wind Energy, Fixed Offshore Wind | Changes in Flow | Physical Environment |
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