The Knowledge Base provides access to information about the environmental effects of wind energy, supporting the WREN 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. Content may also be sorted alphabetically by clicking on column headers. Some entries will appear on the next page.
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|Environmental Risk Evaluation System - An Approach to Ranking Risk of Ocean Energy Development on Coastal and Estuarine Environments||Copping, A., Hanna, L., Van Cleve, B.||Journal Article||Wind Energy (General), Wave, Tidal, Offshore Wind, Marine Energy (General)||Habitat Change, Displacement, Collision, Chemicals, Changes in Flow, Avoidance, Attraction||Marine Mammals, Fish, Birds|
|Environmental Impacts of Offshore Wind Farms in the Belgian Part of the North Sea: Marking a Decade of Monitoring, Research and Innovation||Degraer, S., Brabant, R., Rumes, B.||Report||Wind Energy (General), Offshore Wind||Chemicals, Noise||Birds, Marine Mammals, Cetaceans, Human Dimensions, Fisheries|
|Microplastics in a wind farm area: A case study at the Rudong Offshore Wind Farm, Yellow Sea, China||Wang, T., Zou, X., Li, B.||Journal Article||Wind Energy (General), Offshore Wind||Changes in Flow, Chemicals||Physical Environment, Sediment Transport, Water Quality|
|Potential Impacts from a Worst Case Discharge from an United States Offshore Wind Farm||Gunter, T.||Conference Paper||Wind Energy (General), Offshore Wind||Chemicals|
|Performance and Integrity of Protective Coating Systems for Offshore Wind Power Structures after Three Years Under Offshore Site Conditions||Momber, A., Plagemann, P., Stenzel, V.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals|
|Characterization of alloying components in galvanic anodes as potential environmental tracers for heavy metal emissions from offshore wind structures||Reese, A., Voigt, N., Zimmermann, T.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals|
|The Life-Cycle Energy and Environmental Emissions of a Typical Offshore Wind Farm in China||Yang, J., Chang, Y., Zhang, L.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals||Life Cycle Assessment, Human Dimensions|
|The Adhesion of Corrosion Protection Coating Systems for Offshore Wind Power Constructions after Three Years under Offshore Exposure||Momber, A., Plagemann, P., Stenzel, V.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals|
|Strategic Environmental Assessment (SEA) of Offshore Wind and Marine Renewable Energy in Northern Ireland||Department of Enterprise, Trade and Investment||Report||Marine Energy (General), Tidal, Wave, Offshore Wind||Attraction, Avoidance, Changes in Flow, Chemicals, Collision, Displacement, EMF, Habitat Change, Noise||Bats, Birds, Passerines, Seabirds, Waterfowl, Physical Environment, Sediment Transport, Water Quality, Fish, Demersal Fish, Pelagic Fish, Invertebrates, Marine Mammals, Cetaceans, Reptiles, Climate Change, Environmental Impact Assessment, Fisheries, Legal & Policy, Recreation & Tourism, Social & Economic Data, Stakeholder Engagement, Visual Impacts|
|Leading Edge Erosion of Coated Wind Turbine Blades: Review of Coating Life Models||Slot, H., Gelinck, E., Rentrop, C.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals|
|Emissions from corrosion protection systems of offshore wind farms: Evaluation of the potential impact on the marine environment||Kirchgeorg, T., Weinberg, I., Hörnig, M.||Journal Article||Wind Energy (General), Offshore Wind||Chemicals|
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