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 |
---|---|---|---|---|---|---|
Stakeholder requirements for commercially successful wave energy converter farms | Babarit, A.; Bull, D.; Dykes, K.; et al. | Journal Article | Wave, Marine Energy | Stakeholder Engagement, Human Dimensions | ||
Life Cycle Assessment of a multi-use offshore platform: Combining wind and wave energy production | Elginoz, N.; Bas, B. | Journal Article | Marine Energy, Wave, Wind Energy, Floating Offshore Wind | Human Dimensions, Life Cycle Assessment | ||
Assessing cumulative human activities, pressures, and impacts on North Sea benthic habitats using a biological traits approach | Kenny, A.; Jenkins, C.; Wood, D.; et al. | Journal Article | Tidal, Wave, Wind Energy | Human Dimensions | ||
Wave and Tidal Range Energy Devices Offer Environmental Opportunities as Artificial Reefs | Callaway, R.; Bertelli, C.; Lock, G.; et al. | Conference Paper | Marine Energy, Tidal, Wave | Attraction, Habitat Change | Invertebrates | |
Phase-resolving wave modeling for the wave characterization of coastal and nearshore Marine Renewable Energy sites | Varing, A.; Filipot, J-F.; Roeber, V.; et al. | Conference Paper | Marine Energy, Wave | Ecosystem Processes, Human Dimensions | ||
Demonstration of a Socio-economic Cost of Energy Analysis of a Wave Energy Converter Array | Crooks, D.; de Andres, A.; Medina-López, E.; et al. | Conference Paper | Marine Energy, Wave | Human Dimensions, Social & Economic Data | ||
Biodiversity Characterisation and Hydrodynamic Consequences of Marine Fouling Communities on Marine Renewable Energy Infrastructure in the Orkney Islands Archipelago, Scotland, UK | Want, A.; Crawford, R.; Kakkonen, J.; et al. | Journal Article | Marine Energy, Tidal, Wave | Habitat Change | Invertebrates | |
Ocean Wave Energy in the United States: Current Status and Future Perspectives | Lehmann, M.; Karimpour, F.; Goudey, C.; et al. | Journal Article | Wave, Marine Energy | Social & Economic Data, Human Dimensions | ||
Characterisation of the Biofouling Community on a Floating Wave Energy Device | Nall, C.; Schläppy, M.; Guerin, A. | Journal Article | Wave, Marine Energy | Habitat Change | Invertebrates | |
Wave energy and flow reduce the abundance and size of benthic species on oyster reefs | Lunt, J.; Reustle, J.; Smee, D. | Journal Article | Wave, Marine Energy | Invertebrates | ||
Impact of Climate Change on Wave Energy Resource: The Case of Menorca (Spain) | Sierra, J.; Casas-Prat, M.; Campins, E. | Journal Article | Wave, Marine Energy | Human Dimensions, Climate Change | ||
Integration of wave energy and other marine renewable energy sources with the needs of coastal societies | Manasseh, R.; Sannasiraj, S.; McInnes, K.; et al. | Journal Article | Wind Energy, Wave, Tidal, OTEC, Fixed Offshore Wind, Ocean Current, Marine Energy | Social & Economic Data, Human Dimensions | ||
EcoWatt2050 Project Summary | Side, J. | Report | Marine Energy, Tidal, Wave | Human Dimensions, Climate Change, Marine Spatial Planning |
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