The Knowledge Base provides access to documents and information about the environmental effects of wind and marine renewable energy, supporting the OES-Environmental and WREN initiatives. 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 |
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Bayesian networks for assessing the sustainability of the marine renewable energy sector in the blue economy of Spanish ports | Vaca-Cabrero, J.; González-Cancelas, N.; Camaro-Orive, A. | Journal Article | Marine Energy | Human Dimensions, Marine Spatial Planning | ||
SafeWave Deliverable 3.2 Sound Propagation Modelling | Gambin, J.A.G.; Topon, K.A.S.; Felis, I.; et al. | Report | Marine Energy, Wave | Noise | ||
Assessing the potential impacts of floating Offshore Wind Farms on policy-relevant species: A case study in the Gulf of Roses, NW Mediterranean | Wawrzynkowski, P.; Molins, C.; Lloret, J. | Journal Article | Wind Energy, Floating Offshore Wind | Habitat Change, Noise | Seabirds, Fish, Marine Mammals | |
Habitat use and movements of Japanese spiny lobster (Panulirus japonicus) in a proposed offshore wind farm area: Implications for the coexistence of offshore wind energy development and coastal fisheries | Sasaki, I.; Matsumoto, Y.; Takeda, M.; et al. | Journal Article | Wind Energy | Displacement | Invertebrates, Human Dimensions, Fisheries | |
Addressing offshore wind farms compatibilities and conflicts with marine conservation through the application of modelled benchmarking scenarios | Montero, L.; Abramic, A.; Marrero, A.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Displacement | Human Dimensions, Fisheries | |
More robust offshore wind energy planning through model ensembling | Depellegrin, D.; Ambrosino, M.; Roy, S.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Marine Spatial Planning | ||
SafeWave Deliverable 3.1 EMF Modelling | Imperadore, A.; Amaral, L.; Vinagre, P. | Report | Marine Energy | EMF | ||
Concurrent challenges for Switzerland: interfaces in climate action, biodiversity conservation, energy security and landscape preservation | Brunner, C.; Lordan-Perret, R.; Cadelli, E.; et al. | Report | Wind Energy, Land-Based Wind | Bats, Birds | ||
Assessing areas suitable for offshore wind energy considering potential risk to breeding seabirds in northern Japan | Obane, H.; Kazama, K.; Hashimoto, H.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Birds, Seabirds | ||
Wind farms and Griffon Vultures: Evidence that under certain conditions history is not-always turbulent | Farfan, M.; Díaz-Ruiz, F.; Duarte, J.; et al. | Journal Article | Wind Energy, Land-Based Wind | Collision, Displacement | Birds, Raptors | |
SafeWave Deliverable 6.3 Identifying Suitable Areas for Developing Wave Energy Projects in the European Atlantic Region | Galparsoro, I.; Mandiola, G.; Villarín, E.; et al. | Report | Marine Energy, Wave | Human Dimensions, Marine Spatial Planning | ||
Underwater noise impact assessment of a wave energy converter in the northern Atlantic (Spain) | Madrid, E.; Felis, I.; Garcia, J.; et al. | Conference Paper | Marine Energy, Wave | Noise | ||
High Bat Fatality Rates Estimated at Wind Farms in Southern Spain | Sanchez-Navarro, S.; Gálvez-Ruiz, D.; Rydell, J.; et al. | Journal Article | Wind Energy | Collision | Bats | |
Sensitivity analysis of collision risk at wind turbines based on flight altitude of migratory waterbirds | Kamata, T.; Sato, H.; Mukai, H.; et al. | Journal Article | Wind Energy | Collision | Birds, Waterfowl | |
Public attitudes of offshore wind energy in Japan: An empirical study using choice experiments | Iwata, K.; Kyoi, S.; Ushifusa, Y. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Human Dimensions, Social & Economic Data | ||
Flight Type and Seasonal Movements Are Important Predictors for Avian Collisions in Wind Farms | Puente, A.; Balmori, A. | Journal Article | Wind Energy, Land-Based Wind | Collision | Birds | |
Diverse responses of coastal communities to offshore wind farming development in Southern Spain | Frolova, M.; Pérez-Pérez, B.; Herrero-Luque, D. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Social & Economic Data | ||
Large soaring raptors vs wind turbines development in the Swiss Alps | Vignali, S.; Braunisch, V.; Arlettaz, R. | Report | Wind Energy, Land-Based Wind | Collision, Displacement | Birds, Raptors | |
Bird carcass detection from integrated trials at multiple wind farms | Kitano, M.; Smallwood, K. Shawn; Fukaya, K. | Journal Article | Wind Energy, Land-Based Wind | Collision | Birds | |
SafeWave Deliverable 2.5 Monitoring fish communities | Uriarte, A.; Boyra, G.; Ferarios, J.; et al. | Report | Marine Energy, Wave | Attraction | Fish | |
The species-specificity of energy landscapes for soaring birds, and its consequences for transferring suitability models across species | Scacco, M.; Arrondo, E.; Donazar, J.; et al. | Journal Article | Wind Energy, Land-Based Wind | Changes in Flow, Collision | Birds, Raptors | |
Analysing citizens’ perceptions of renewable energies in rural areas: A case study on wind farms in Spain | Duarte, R.; García-Riazuelo, A.; Saez, L.; et al. | Journal Article | Wind Energy, Land-Based Wind | Human Dimensions, Social & Economic Data | ||
Effects of Tidal Stream Energy Exploitation on Estuarine Circulation and Its Seasonal Variability | Sanchez, M.; Fouz, D.; López, I.; et al. | Journal Article | Marine Energy, Tidal | Changes in Flow | Physical Environment, Water Quality | |
Significant decline of Griffon Vulture collision mortality in wind farms during 13-year of a selective turbine stopping protocol | Ferrer, M.; Alloing, A.; Baumbush, R.; et al. | Journal Article | Wind Energy, Land-Based Wind | Collision | Birds, Raptors | |
Country-Specific Guidance Document: Spain | OES-Environmental | Report | Marine Energy | |||
Mapping the collision risk between two gull species and offshore wind turbines: Modelling and validation | Mikami, K.; Kazama, K.; Kazama, M.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Collision | Birds, Seabirds | |
Assessing the Impact of Offshore Wind Power Deployment on Fishery: A Synthetic Control Approach | Shimada, H.; Asano, K.; Nagai, Y.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Fisheries, Marine Spatial Planning, Social & Economic Data | ||
Environmental Compatibility of the Parc Tramuntana Offshore Wind Project in Relation to Marine Ecosystems | Diez-Caballero, K.; Troiteiro, S.; Garcia-Alba, J.; et al. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Changes in Flow, EMF, Habitat Change, Noise | Fish, Invertebrates, Physical Environment, Sediment Transport, Water Quality, Human Dimensions, Fisheries | |
Wind farm noise shifts vocalizations of a threatened shrub-steppe passerine | Gomez-Catasus, J.; Barrero, A.; Llusia, D.; et al. | Journal Article | Wind Energy, Land-Based Wind | Noise | Birds, Passerines | |
Impact on the perceived landscape quality through renewable energy infrastructure. A discrete choice experiment in the context of the Swiss energy transition | Salak, B.; Kienast, F.; Olschewski, R.; et al. | Journal Article | Wind Energy, Land-Based Wind | Human Dimensions, Social & Economic Data, Visual Impacts | ||
Keep it local and bird-friendly: Exploring the social acceptance of wind energy in Switzerland, Estonia, and Ukraine | Vuichard, P.; Broughel, A.; Wüstenhagen, R.; et al. | Journal Article | Wind Energy | Habitat Change | Birds, Human Dimensions, Social & Economic Data | |
How far do noise concerns travel? Exploring how familiarity and justice shape noise expectations and social acceptance of planned wind energy projects | Dällenbach, N.; Wüstenhagen, R. | Journal Article | Wind Energy, Land-Based Wind | Noise | Human Dimensions, Social & Economic Data | |
Factors influencing wind turbine avoidance behaviour of a migrating soaring bird | Santos, C.; Ramesh, H.; Ferraz, R.; et al. | Journal Article | Wind Energy, Land-Based Wind | Avoidance, Collision | Birds, Seabirds | |
Visual cost of energy facilities: A comprehensive model and case study of offshore wind farms | Otero, C.; Lopez, J.; Diaz, A.; et al. | Journal Article | Wind Energy | Human Dimensions, Visual Impacts | ||
Application of Marine Spatial Planning tools for tidal stream farm micro-siting | Álvarez, M.; Ramos, V.; Carballo, R.; et al. | Journal Article | Marine Energy, Tidal | Human Dimensions, Marine Spatial Planning | ||
A scientific study recommends excluding and moving offshore wind farms away from the protected areas in the Mediterranean | Universitat de Barcelona; University of Girona | Magazine Article | Wind Energy | Fish, Invertebrates, Marine Mammals, Physical Environment, Human Dimensions, Fisheries, Marine Spatial Planning, Recreation & Tourism | ||
Crossing artificial obstacles during migration: The relative global ecological risks and interdependencies illustrated by the migration of common quail Coturnix coturnix | Nadal, J.; Sáez, D.; Margalida, A. | Journal Article | Wind Energy, Land-Based Wind | Collision, Habitat Change | Birds | |
Satellite Tracking of Migration Routes of the Eastern Buzzard (Buteo japonicus) in Japan through Sakhalin | Hijikata, N.; Yamaguchi, N.; Hiraoka, E.; et al. | Journal Article | Wind Energy | Collision, Habitat Change | Birds | |
A Predictive Flight-Altitude Model for Avoiding Future Conflicts Between an Emblematic Raptor and Wind Energy Development in the Swiss Alps | Vignali, S.; Lörcher, F.; Hegglin, D.; et al. | Journal Article | Wind Energy, Land-Based Wind | Collision | Birds, Raptors | |
Application of Monte Carlo and Fuzzy Analytic Hierarchy Processes for ranking floating wind farm locations | Díaz, H.; Teixeira, A.; Soares, C. | Journal Article | Wind Energy, Fixed Offshore Wind, Floating Offshore Wind | Changes in Flow, Habitat Change | Birds, Marine Mammals, Human Dimensions, Fisheries, Recreation & Tourism | |
Comparison of the Home Ranges of Mountain Hawk-Eagles During Different Phases of Wind Farm Construction | Nishibayashi, N.; Kitamura, W.; Yoshizaki, S. | Journal Article | Wind Energy | Avoidance | Birds, Raptors | |
The Influence of Policy Risk on Swiss Wind Power Investment | Broughel, A.; Wüstenhagen, R. | Book Chapter | Wind Energy, Land-Based Wind | Birds, Human Dimensions, Environmental Impact Assessment, Legal & Policy | ||
Country-Specific Guidance Document: Japan | OES-Environmental | Report | Marine Energy | |||
Socio-economic impact of a 200 MW floating wind farm in Gran Canaria | Schallenberg-Rodriguez, J.; Inchausti-Sintes, F. | Journal Article | Wind Energy, Floating Offshore Wind | Human Dimensions, Social & Economic Data | ||
Reducing bird collision risk per megawatt by introducing longer wind turbine blades | Shimada, Y. | Journal Article | Wind Energy | Collision | Birds | |
Assessing the potential areas for developing offshore wind energy in Japanese territorial waters considering national zoning and possible social conflicts | Obane, H.; Nagai, Y.; Asano, K. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Fisheries, Legal & Policy, Marine Spatial Planning, Navigation, Stakeholder Engagement, Visual Impacts | ||
Introducing offshore wind energy in the sea space: Canary Islands case study developed under Maritime Spatial Planning principles | Abramic, A.; Mendoza, A.; Haroun, R. | Journal Article | Wind Energy, Fixed Offshore Wind | Human Dimensions, Marine Spatial Planning | ||
MRE Regulator Survey Report: Japan | Rose, D.; Freeman, M. | Report | Marine Energy | |||
Assessing the effect of wind farms in fauna with a mathematical model | Roman, P.; Salinas, C.; Araujo, B. | Journal Article | Wind Energy, Land-Based Wind | Habitat Change | Bats, Birds, Ecosystem Processes, Human Dimensions, Environmental Impact Assessment | |
Landscape features associated to wind farms increase mammalian predator abundance and ground-nest predation | Gomez-Catasus, J.; Barrero, A.; Reverter, M.; et al. | Journal Article | Wind Energy, Land-Based Wind | Habitat Change | Birds, Terrestrial Mammals |
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