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Fixed Offshore Wind

Capturing energy from offshore wind with bottom-mounted foundations.

Offshore wind energy technologies harness kinetic energy from the wind to generate energy and transport that energy back to shore via a subsea export cable. The main advantage of offshore wind energy is access to stronger and more consistent winds, allowing for the use of larger turbines. The development of offshore wind in Europe and Asia has preceded development activities in other parts of the world; however, several projects in the United States are currently underway.

There are different types of offshore wind turbine foundation on which the turbine can be installed, depending on the depth and substrate. Gravity foundations are used at shallow depths (0-30m) and consist of large, steel or concrete bases that rest on the seabed. Suction bucket foundations are also made from steel or concrete, and are installed using the pressure difference generated between the inside of the bucket and the water surrounding it (without any use of mechanical force). Monopile foundations are used at shallow depths (0-30 m) and consist of a pile that is driven into the seabed. Monopiles are typically less costly than other foundation types and are the most commonly used. Tripod fixed bottom foundations are used at transitional depths (20-80m) and consist of three legs connecting to a central shaft that supports the turbine base. Each leg has a pile driven into the seabed, which creates a wide foundation that allows for the piles to be placed at a shallower depth in the seabed than monopile foundations. Jacket foundations are also used at transitional depths (20-80m) and feature a lattice framework that comprises three to four anchoring points driven into the seafloor.

The environmental concerns associated with offshore wind farms vary with foundation type. Monopiles, for example, require pile-driving, which produces incredibly loud noises that tend to propagate far in the water, even after mitigation strategies such as bubble shields, slow start, and acoustic cladding are employed. Collision risk with birds and bats is a major concern, though the impact is more difficult to quantify offshore because carcasses that provide evidence of collisions become lost at sea. While the footprint of offshore wind energy is relatively small, it may still cause scouring and changes to sediment transport. As with all electricity generation, there is a slight concern that electromagnetic fields generated by power cables may affect animals that use Earth's natural magnetic field for orientation, navigation, and hunting. Artificial reefing is likely to occur around wind farms as the new hard substrate provides protection and attracts colonizing invertebrates and fish.

Marine and Wind Energy Environmental Documents

Tethys is a knowledge hub that contains documents on the environmental effects of wind and marine energy. The table below contains all of the documents in the Tethys Knowledge Base associated with Fixed Offshore Wind.

Total: 3854

Title Author Date Content Type Technology Stressor Receptor
Suivi écologique le long du fuseau: Suivi substrats rocheux et enrochements en 2021: Suivi substrats meubles en 2022 TBM Environnement Report Wind Energy, Fixed Offshore Wind Habitat Change Invertebrates, Physical Environment
Power Analysis for Optimal Design of a Passive Acoustic Monitoring Network for US East Coast Offshore Wind Chudzinska, M., Thomas, L. Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Noise Marine Mammals, Cetaceans
Maryland Offshore Wind Construction and Operations Plan: Appendix II E1 - Essential Fish Habitat Assessment TRC Report Wind Energy, Fixed Offshore Wind Fish
Electromagnetic Fields (EMFs) from subsea power cables in the natural marine environment Gill, A., Hutchison, Z., Desender, M. Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind EMF
Cumulative effects of offshore renewables: From pragmatic policies to holistic marine spatial planning tools Declerck, M., Trifonova, N., Hartley, J. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Legal & Policy, Marine Spatial Planning
Protected species considerations for ocean planning: A case study for offshore wind energy development in the U.S. Gulf of Mexico Farmer, N., Garrison, L., Litz, J. Journal Article Wind Energy, Fixed Offshore Wind Fish, Marine Mammals, Cetaceans, Reptiles, Sea Turtles, Human Dimensions, Marine Spatial Planning
Scenario studies on potential ecosystem effects in future offshore wind farms in the North Sea Zijl, F., Stendert, L., Leummens, L. Report Wind Energy, Fixed Offshore Wind Habitat Change Ecosystem Processes, Physical Environment, Sediment Transport, Water Quality
Nobelwind Offshore Energy: Annual Work Report 2022 Nobelwind Offshore Energy Report Wind Energy, Fixed Offshore Wind
Annual environmental report 2022 – Belwind Belwind Report Wind Energy, Fixed Offshore Wind Changes in Flow, Habitat Change Birds, Ecosystem Processes, Fish, Physical Environment, Human Dimensions, Environmental Impact Assessment
Shutting down offshore wind turbines during peak bird migration Rijkswaterstaat Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Collision Birds
Spatial Impact of Wind Farm Construction on Harbor Porpoise Detectability van Geel, N., Benjamins, S., Marmo, B. Journal Article Wind Energy, Fixed Offshore Wind Noise Marine Mammals
EDEN 2000: Exploring Options For A Nature-Proof Development of Offshore Wind Farms Inside A Natura 2000 Area Degraer, S., Brabant, R., Vanaverbeke, J. Report Wind Energy, Fixed Offshore Wind EMF Fish, Invertebrates, Marine Mammals, Human Dimensions, Fisheries
Beacon Wind Project: Beacon Wind 1 and Beacon Wind 2 Construction and Operations Plan AECOM Report Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Project Bandibuli/Firefly Environmental and Social Impact Assessment Scoping Report RPS group Report Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Trade-offs between fisheries, offshore wind farms and marine protected areas in the southern North Sea – Winners, losers and effective spatial management Püts, M., Kempf, A., Mollmann, C. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Fisheries, Marine Spatial Planning
Geospatial dimensions of the renewable energy transition — The importance of prioritisation Butschek, F., Peters, J., Remmers, T. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Marine Spatial Planning
Scoping Opinion for Dogger Bank D Offshore Wind Farm The Planning Inspectorate for England and Wales Report Wind Energy, Fixed Offshore Wind
Eco-friendly reef restoration pilots in offshore wind farms Bos, O., Kamermans, P., Tonk, L. Report Wind Energy, Fixed Offshore Wind Invertebrates, Human Dimensions
What are the potential effects of the electromagnetic fields produced by offshore wind farm power cables on marine organisms? Henry, S., Carlier, A., Chauvaud, S. Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind EMF Fish, Invertebrates
Development of a Cumulative Impact Assessment tool for birds in Norwegian Offshore Waters: Trollvind OWF as a case study Layton-Matthews, K., Buckingham, L., Critchley, E. Report Wind Energy, Fixed Offshore Wind Habitat Change Birds
Exploring agenda-setting of offshore energy innovations: Niche-regime interactions in Dutch Marine Spatial Planning processes Kusters, J., van Kann, F., Zuidema, C. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Legal & Policy, Marine Spatial Planning
A wind of change for soft-sediment infauna within operational offshore windfarms Lefaible, N., Braeckman, U., Degraer, S. Journal Article Wind Energy, Fixed Offshore Wind Habitat Change Invertebrates, Physical Environment
Do the metals released by galvanic anodes used in offshore wind farms pose a risk to the marine environment? Henry, S., Amouroux, I., Aragon, E. Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Chemicals Physical Environment, Water Quality
Field Observations During Offshore Wind Structure Installation and Operation, Volume 2 Ampela, K., Bacon, C., Khan, A. Report Wind Energy, Fixed Offshore Wind Noise
M3.1 Business Briefs Belgian Pilot Lago, M., Zaiter, Y. Report Wind Energy, Fixed Offshore Wind
Empire Wind Fisheries and Benthic Monitoring Plan INSPIRE Environmental Report Wind Energy, Fixed Offshore Wind Invertebrates, Physical Environment, Human Dimensions, Environmental Impact Assessment, Fisheries
Decision notice Section 36 variation Moray East Offshore Wind Farm March 2018 Bain, N. Guidance Wind Energy, Fixed Offshore Wind
Evaluating the Benefits of Noise Reduction Mitigation: The ECHO Program Malinka, C., Tollit, D., Trounce, K. Book Chapter Wind Energy, Fixed Offshore Wind Noise Marine Mammals, Cetaceans
Setting EU Threshold Values for continuous underwater sound Druon, J., Hanke, G., Casier, M. Report Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Noise Marine Mammals
Small effect sizes are achievable in offshore wind monitoring surveys Livermore, J., Truesdale, C., Ransier, K. Journal Article Wind Energy, Fixed Offshore Wind Invertebrates
Setting EU Threshold Values for impulsive underwater sound Sigray, P., Andersson, M., André, M. Report Wind Energy, Fixed Offshore Wind Noise Ecosystem Processes, Marine Mammals
Offshore Wind Energy and Seabird Collision Vulnerability in California Grover, W. Thesis Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Birds, Seabirds
Atlantic Shores Offshore Wind South Draft Environmental Impact Statement (DEIS) Bureau of Ocean Energy Management (BOEM) Report Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Five golden principles to advance marine reef restoration by linking science and industry Hofstede, R., Bouma, T., van Koningsveld, M. Journal Article Wind Energy, Fixed Offshore Wind Ecosystem Processes, Invertebrates
U.S. Offshore Wind Energy Noise Reduction Associated with Installation of Fixed-Bottom Foundations: Workshop Report Green, R., Farr, H., Ryan, K. Workshop Article Wind Energy, Fixed Offshore Wind Noise Fish, Invertebrates, Marine Mammals, Physical Environment
Second inventory of technical performance and biodiversity on structures at Offshore Test Site Driessen, F., Bergsma, J. Report Wind Energy, Fixed Offshore Wind Invertebrates
The large-scale impact of anthropogenic mixing by offshore wind turbine foundations in the shallow North Sea Christiansen, N., Carpenter, J., Daewel, U. Journal Article Wind Energy, Fixed Offshore Wind Changes in Flow Ecosystem Processes, Physical Environment, Sediment Transport
Towards Digital Twins of the Oceans: The Potential of Machine Learning for Monitoring the Impacts of Offshore Wind Farms on Marine Environments Schneider, J., Klüner, A., Zielinski, O. Journal Article Wind Energy, Fixed Offshore Wind, Floating Offshore Wind Human Dimensions, Environmental Impact Assessment
Pile driving and drilling underwater sounds impact the metamorphosis dynamics of Pecten maximus (L., 1758) larvae Gigot, M, Olivier, F., Cervello, G. Journal Article Wind Energy, Fixed Offshore Wind Noise Invertebrates
Atlantic Shores Offshore Wind Construction and Operations Plan for Commercial Lease OCS Atlantic Shores Offshore Wind, LLC Report Wind Energy, Fixed Offshore Wind Changes in Flow, Collision, Displacement Bats, Birds, Fish, Physical Environment, Human Dimensions, Environmental Impact Assessment, Fisheries, Visual Impacts

Displaying 801 - 840 of 3854 results