The Knowledge Base provides access to documents and 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, 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 | Receptor |
---|---|---|---|---|---|---|
Field validation of radar systems for monitoring bird migration | Nilsson, C.; Dokter, A.; Schmid, B.; et al. | Journal Article | Wind Energy, Land-Based Wind, Fixed Offshore Wind, Floating Offshore Wind | Collision, Displacement | Bats, Birds | |
Developing expert scientific consensus on the environmental and societal effects of marine artificial structures prior to decommissioning | Knights, A.; Lemasson, A.; Firth, L.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | Physical Environment, Human Dimensions, Social & Economic Data | |
Collision and displacement vulnerability to offshore wind energy infrastructure among marine birds of the Pacific Outer Continental Shelf | Kelsey, E.; Felis, J.; Czapanskiy, M.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Attraction, Avoidance, Collision, Displacement | Birds | |
Linking ecosystem services with epibenthic biodiversity change following installation of offshore wind farms | Causon, P.; Gill, A. | Journal Article | Fixed Offshore Wind | Habitat Change | Ecosystem Processes, Invertebrates, Human Dimensions, Social & Economic Data | |
Creation of microhabitats (tidepools) in ripraps with climax communities as a way to mitigate negative effects of artificial substrate on marine biodiversity | Ostale-Valriberas, E.; Sempere-Valverde, J.; Coppa, S.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Marine Energy | Habitat Change | Invertebrates | |
Effect of an Offshore Wind Farm on the Viviparous Eelpout: Biometrics, Brood Development and Population Studies in Lillgrund, Sweden | Langhamer, O.; Dahlgren, T.; Rosenqvist, G. | Journal Article | Wind Energy, Fixed Offshore Wind | Attraction, Avoidance, Habitat Change | Fish, Demersal Fish | |
A review of acoustic telemetry in Europe and the need for a regional aquatic telemetry network | Abecasis, D.; Steckenreuter, A.; Reubens, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Habitat Change | Fish, Invertebrates | |
Behavioural responses of Sandwich terns following the construction of offshore wind farms | Thaxter, C.; Green, R.; Collier, M.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Avoidance, Collision, Displacement | Birds, Seabirds | |
An Eulerian perspective on habitat models of striped bass occurrence in an offshore wind development area | Rothermel, E.; O'Brien, M.; Best, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Attraction, Avoidance, Displacement | Fish, Pelagic Fish | |
A synthesis of socioeconomic and sociocultural indicators for assessing the impacts of offshore renewable energy on fishery participants and fishing communities | Willis-Norton, E.; Mangin, T.; Schroeder, D.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Displacement | Human Dimensions, Fisheries, Social & Economic Data | |
Settlement success of European flat oyster (Ostrea edulis) on different types of hard substrate to support reef development in offshore wind farms | ter Hofstede, R.; Witte, S.; Kamermans, P.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Attraction, Habitat Change | Invertebrates | |
The large-scale impact of offshore wind farm structures on pelagic primary productivity in the southern North Sea | Slavik, K.; Lemmen, C.; Zhang, W.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Habitat Change | Ecosystem Processes, Invertebrates | |
Contributions of marine infrastructures to marine planning and protected area networking | Shabtay, A.; Portman, M.; Carmel, Y. | Journal Article | Wind Energy, Fixed Offshore Wind, Marine Energy | Habitat Change | Marine Spatial Planning, Human Dimensions, Ecosystem Processes | |
Ocean sprawl facilitates dispersal and connectivity of protected species | Henry, L.; Mayorga-Adame, C.; Fox, A.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Habitat Change | Invertebrates | |
Drivers of flight altitude during nocturnal bird migration over the North Sea and implications for offshore wind energy | Bradaric, M.; Kranstauber, B.; Bouten, W.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Displacement | Birds | |
Connectivity of larval stages of sedentary marine communities between hard substrates and offshore structures in the North Sea | van der Molen, J.; García-García, L.; Whomersley, P.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Attraction, Habitat Change | Ecosystem Processes | |
Dredging-induced turbid plumes affect bio-irrigation and biogeochemistry in sediments inhabited by Lanice conchilega | Mestdagh, S.; Ysebaert, T.; Moens, T.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Habitat Change | Physical Environment, Sediment Transport, Invertebrates | |
Primary vs grey: A critical evaluation of literature sources used to assess the impacts of offshore wind farms | Szostek, C.; Edwards-Jones, A.; Beaumont, N.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Changes in Flow, Collision, Habitat Change | Bats, Birds, Fish, Invertebrates, Marine Mammals, Physical Environment, Human Dimensions | |
Functional and structural responses to marine urbanisation | Mayer-Pinto, M.; Cole, V.; Johnston, E.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Marine Energy | Avoidance, Attraction | Invertebrates | |
Oceanographic and biological influences on recruitment of benthic invertebrates to hard substrata on the Oregon shelf | Meyer, K.; Li, Y.; Young, C. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Attraction, Habitat Change | Invertebrates | |
Anthropogenic disturbance facilitates a non-native species on offshore oil platforms | Viola, S.; Page, H.; Zaleski, S.; et al. | Journal Article | Marine Energy, Wind Energy, Fixed Offshore Wind | Attraction, Habitat Change | Invertebrates | |
Benthic biodiversity on old platforms, young wind farms, and rocky reefs | Coolen, J.; van der Weide, B.; Cuperus, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Habitat Change | Invertebrates | |
Environmental benefits of leaving offshore infrastructure in the ocean | Fowler, A.; Jørgensen, A.; Svendsen, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Habitat Change | ||
A new method for quantifying redistribution of seabirds within operational offshore wind farms finds no evidence of within-wind farm displacement | Trinder, M.; O'Brien, S.; Deimel, J. | Journal Article | Wind Energy, Fixed Offshore Wind | Avoidance, Displacement | Seabirds | |
A framework for studying the effects of offshore wind energy development on birds and bats in the Eastern United States | Williams, K.; Gulka, J.; Cook, A.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Attraction, Avoidance, Collision, Displacement | Bats, Birds | |
Wind farms increase land surface temperature and reduce vegetation productivity in the Inner Mongolia Plateau | Liu, L.; Liu, P.; Yu, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Habitat Change | Physical Environment |
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