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 Sort descending | Receptor |
---|---|---|---|---|---|---|
Uisce Tapa Project | Andritz Hydro | Project Site | Marine Energy, Tidal | |||
Tethys Marine Renewable Energy Fact Sheet | Tethys | Summary | Marine Energy | |||
MW-Level Wave Energy Demonstration Project | Chinese Academy of Sciences; Guangzhou Institute of Energy Conversion (GIEC) | Project Site | Marine Energy, Wave | |||
CorPower Ocean HiWave-5 Project | CorPower Ocean | Project Site | Marine Energy, Wave | |||
Powerpier by Havkraft | Havkraft AS | Project Site | Marine Energy, Wave | |||
Tidal Thames Test Site | The Port of London Authority | Project Site | Marine Energy, Riverine | |||
Bombora mWave Demonstration Project | Bombora Wave Power | Project Site | Marine Energy, Wave | |||
Nova Tidal Array | Nova Innovation; Nova Innovation | Project Site | Marine Energy, Tidal | |||
WESE – Wave Energy in Southern Europe | AZTI; WavEC Offshore Renewables; AW Energy; et al. | Project Site | Marine Energy, Wave | |||
Mocean Wave Energy Converter: Blue Horizon | Mocean Energy | Project Site | Marine Energy, Wave | |||
SeaRAY Autonomous Offshore Power System 2022 Application Demonstration | C-Power | Project Site | Marine Energy, Wave | |||
Statistical power analysis of seabird monitoring methods in strong tidal streams | Couto, A.; Williamson, B.; Long, C.; et al. | Conference Paper | Marine Energy, Tidal | Birds, Seabirds | ||
Modeling the Probability of Overlap Between Marine Fish Distributions and Marine Renewable Energy Infrastructure Using Acoustic Telemetry Data | Bangley, C.; Hasselman, D.; Flemming, J.; et al. | Journal Article | Marine Energy, Tidal | Fish, Pelagic Fish, Human Dimensions, Marine Spatial Planning | ||
ORJIP Ocean Energy Information Note: Cumulative Impact Assessment | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | |||
ORJIP Ocean Energy Information Note: Data Transferability | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Human Dimensions, Legal & Policy | ||
ORJIP Ocean Energy Information Note: Background Information | Offshore Renewables Joint Industry Programme (ORJIP) | Report | Marine Energy | Human Dimensions, Legal & Policy | ||
Words and Waves: Ecological Dialogism as an Approach to Discourse, Community, and Marine Renewable Energy in Orkney | Ford, R. | Thesis | Marine Energy | Human Dimensions, Environmental Justice, Social & Economic Data, Stakeholder Engagement | ||
Case study on the novel permitting and authorization of PacWave South, a US grid-connected wave energy test facility: Development, challenges, and insights | Freeman, M.; O'Neil, R.; Garavelli, L.; et al. | Journal Article | Marine Energy, Wave | Human Dimensions, Legal & Policy | ||
State of the ocean report 2022: pilot edition | United Nations Educational, Scientific and Cultural Organization (UNESCO) | Report | Human Dimensions, Climate Change, Environmental Justice | |||
Spatial Modeling to Support Sustainable Offshore Wind Energy Development for California | Degagne, R.; Gough, M.; Joseph, G.; et al. | Report | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Human Dimensions, Marine Spatial Planning | ||
A study into the potential social value offered to Europe from the development and deployment of wave and tidal energy to 2050 | Ruiz-Minguela, P.; Villate, J.; Uriarte, X.; et al. | Report | Marine Energy, Tidal, Wave | Human Dimensions, Social & Economic Data | ||
Modeling the impact of innovation in marine energy generation-related technologies on carbon dioxide emissions in South Korea | Jiang, Q.; Khattak, S. | Journal Article | Marine Energy | Human Dimensions, Climate Change, Social & Economic Data | ||
Community Acceptance of Blue Energy: Understanding Future Research Trajectories for Understanding "Place-Technology-Fit" Perceptions | Axon, S. | Book Chapter | Marine Energy, Wind Energy | Human Dimensions, Social & Economic Data, Stakeholder Engagement | ||
NEFMC Research Priorities and Data Needs for 2021-2025 | New England Fishery Management Council | Report | Human Dimensions | |||
The public willingness to pay for the research and demonstration of tidal stream energy in South Korea | Choi, K.; Kim, J.; Yoo, S. | Journal Article | Marine Energy, Tidal | Human Dimensions, Social & Economic Data | ||
Enabling Indigenous innovations to re-centre social licence to operate in the Blue Economy | Lyons, P.; Mynott, S.; Melbourne-Thomas, J. | Journal Article | Marine Energy, Wind Energy | Human Dimensions, Stakeholder Engagement | ||
Evaluation of environmental sustainability matrix of Deepgen tidal turbine | Rashedi, A.; Khanam, T.; Jeong, B.; et al. | Journal Article | Marine Energy, Tidal | Human Dimensions, Life Cycle Assessment | ||
Marine renewable energy project: The environmental implication and sustainable technology | Cui, Y.; Zhao, H. | Journal Article | Marine Energy | Human Dimensions, Social & Economic Data | ||
Robust ocean zoning for conservation, fishery and marine renewable energy with co-location strategy | Jia, R.; Gao, J.; Gao, F. | Journal Article | Marine Energy | Human Dimensions, Fisheries, Marine Spatial Planning | ||
Mitigating Negative Impacts of Marine Renewable Energy on Biodiversity: The Role of International Environmental Law | Marauhn, T.; Böhringer, A-M.; Jaś-Nowopolska, M. | Journal Article | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Human Dimensions, Legal & Policy | ||
Benefits of real-time object detection for environmental monitoring of marine energy devices | Murphy, P.; Joslin, J.; Scott, M. | Presentation | Marine Energy | |||
Taking a Broader Look at Environmental and Ecological Effects of Marine Energy Development | Hemery, L.; Copping, A.; Hasselman, D.; et al. | Presentation | Marine Energy | |||
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 | ||
The Economic Impact of Scotland's Renewable Energy Sector - 2022 Update | University of Strathclyde; Scottish Renewables | Report | Marine Energy, Wind Energy | Human Dimensions, Social & Economic Data | ||
Powering the Blue Economy: An Assessment of Marine Renewable Energies | Guduru, S.; Narula, K. | Book Chapter | Marine Energy, OTEC, Wind Energy, Fixed Offshore Wind | Human Dimensions, Climate Change, Legal & Policy | ||
Development of a model for the identification of suitable areas for the development of wave energy projects in the European Atlantic region in the context of maritime spatial planning and its implementation into a Decision Support Tool | Galparsoro, I.; Mandiola, G.; Gariner, R.; et al. | Report | Marine Energy, Wave | Human Dimensions, Marine Spatial Planning | ||
Software for real-time localization of baleen whale calls using directional sonobuoys: A case study on Antarctic blue whales | Miller, B.; Calderan, S.; Gillespie, D.; et al. | Journal Article | Marine Mammals | |||
Socio-economic, legal, and political context of offshore renewable energies | Salvador, S.; Ribeiro, M. | Journal Article | Marine Energy, Wind Energy | Human Dimensions, Legal & Policy, Social & Economic Data | ||
Mapping potential environmental impacts of offshore renewable energy | Galparsoro, I.; Menchaca, I.; Seeger, I.; et al. | Report | Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Ecosystem Processes, Human Dimensions, Marine Spatial Planning | ||
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 | ||
2021-2022 California Current Ecosystem Status Report | Harvey, C.; Garfield, T.; Williams, G.; et al. | Report | ||||
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 | ||
Determining dominant scatterers of sound in mixed zooplankton populations | Lavery, A.; Wiebe, P.; Stanton, T.; et al. | Journal Article | Invertebrates | |||
Measurements of acoustic scattering from zooplankton and oceanic microstructure using a broadband echosounder | Lavery, A.; Chu, D.; Moum, J. | Journal Article | Invertebrates | |||
Similarities between Line Fishing and Baited Stereo-Video Estimations of Length-Frequency: Novel Application of Kernel Density Estimates | Langlois, T.; Fitzpatrick, B.; Fairclough, D.; et al. | Journal Article | Fish | |||
From echolocation clicks to animal density—Acoustic sampling of harbor porpoises with static dataloggers | Kyhn, L.; Tougaard, J.; Thomas, L.; et al. | Journal Article | Marine Mammals, Cetaceans | |||
Harbour porpoise (Phocoena phocoena) static acoustic monitoring: laboratory detection thresholds of T-PODs are reflected in field sensitivity | Kyhn, L.; Tougaard, J.; Teilmann, J.; et al. | Journal Article | Marine Mammals, Cetaceans | |||
Measurement and removal of echo integration noise | Korneliussen, R. | Journal Article | Fish | |||
Species identification in deep water using multiple acoustic frequencies | Kloser, R.; Ryan, T.; Sakov, P.; et al. | Journal Article | Fish | |||
Environmental Biology of Fishes | Jobling, M. | Book | Fish |
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