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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: 3983

Title Author Date Content Type Technology Stressor Receptor
Strategic Environmental Assessment (SEA) for Wind Energy Planning: Lessons from the United Kingdom and Germany Phylip-Jones, J., Fischer, T. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Offshore wind climatology based on synergetic use of Envisat ASAR, ASCAT and QuikSCAT Hasager, C., Mouche, A., Badger, M. Journal Article Wind Energy, Fixed Offshore Wind Changes in Flow Physical Environment
Special Issue: Renewable Ocean Energy Development and the Environment Zydlewski, G., Copping, A., Redden, A. Journal Article Wind Energy, Fixed Offshore Wind, Marine Energy Ecosystem Processes
Lessons from Stakeholder Dialogues on Marine Aquaculture in Offshore Wind Farms: Perceived Potentials, Constraints and Research Gaps Wever, L., Krause, G., Buck, B. Journal Article Wind Energy, Fixed Offshore Wind Stakeholder Engagement, Human Dimensions
Offshore Wind Farms in the Southwestern Baltic Sea: A Model Study of Regional Impacts on Oxygen Conditions Janßen, H., Schröder, T., Zettler, M. Journal Article Wind Energy, Fixed Offshore Wind Ecosystem Processes, Physical Environment, Water Quality
An investigation of the fisheries ecosystem dynamics in Rhode Island's nearshore waters Malek, A. Thesis Wind Energy, Fixed Offshore Wind Fish, Demersal Fish, Invertebrates
Effect of pile-driving sound on the survival of fish larvae Bolle, L., de Jong, C., Blom, E. Report Wind Energy, Fixed Offshore Wind Noise Fish
Effect of pile-driving sound on the survival of fish larvae Bolle, L., de Jong, C., Blom, E. Report Wind Energy, Fixed Offshore Wind Noise Pelagic Fish, Fish
Depth use and movements of homing Atlantic salmon (Salmo salar) in Scottish coastal waters in relation to marine renewable energy development Godfrey, J., Stewart, D., Middlemas, S. Report Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind Fish, Pelagic Fish
The Avoidance Rates of Collision Between Birds and Offshore Turbines Cook, A., Humphreys, E., Masden, E. Report Wind Energy, Fixed Offshore Wind Attraction, Avoidance, Collision, Displacement Birds, Seabirds
Greenhouse Gas Emissions from Electricity Generated by Offshore Wind Farms Reimers, B., Özdirik, B., Kaltschmitt, M. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Life Cycle Assessment
The Influence of Large Offshore Wind Farms on the North Sea and Baltic Sea - A Comprehensive Literature Review Clark, S., Schroeder, F., Baschek, B. Report Wind Energy, Fixed Offshore Wind Changes in Flow Ecosystem Processes, Physical Environment, Water Quality
Virginia Offshore Wind Technology Advancement Project on the Atlantic Outer Continental Shelf Offshore Virginia Environmental Assessment Bureau of Ocean Energy Management (BOEM) Report Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Report on the Implications for European Sites Proposed Dogger Bank Teesside A & B Offshore Wind Farm The Planning Inspectorate for England and Wales Report Wind Energy, Fixed Offshore Wind
Realizing the social acceptance of community renewable energy: A process-outcome analysis of stakeholder influence Ruggiero, S., Onkila, T., Kuittinen, V. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Stakeholder Engagement
Offshore Wind Submarine Cable Spacing Guidance TÜV SÜD PMSS, Red Penguin Associates Report Wind Energy, Fixed Offshore Wind
Investigating the Co-Existence of Fisheries and Offshore Renewable Energy in the UK: Identification of a Mitigation Agenda for Fishing Effort Displacement de Groot, J., Campbell, M., Ashley, M. Journal Article Marine Energy, Wind Energy, Fixed Offshore Wind Human Dimensions, Fisheries
Maps of SPA breeding seabird foraging ranges Scottish Natural Heritage Presentation Marine Energy, Wind Energy, Fixed Offshore Wind Birds, Seabirds
Hornsea Offshore Wind Farm Final Environmental Assessment Horton, G. Report Wind Energy, Fixed Offshore Wind Habitat Change Birds, Fish, Marine Mammals, Physical Environment, Human Dimensions, Environmental Impact Assessment
Eco-Maintenance for Complex Systems: Application on System of Renewable Energy Production Tchertchian, N., Millet, D. Conference Paper Wind Energy, Fixed Offshore Wind Ecosystem Processes
Effects of a 5-year trawling ban on the local benthic community in a wind farm in the Dutch coastal zone Bergman, M., Ubels, S., Duineveld, G. Journal Article Wind Energy, Fixed Offshore Wind Habitat Change Invertebrates, Physical Environment, Human Dimensions, Fisheries
Dynamic Measurements of Pile Deflections as a Source of Underwater Sound Emissions during Impact Driving of Offshore Pile Foundations Kuhn, C., Sychla, H., Stein, P. Conference Paper Wind Energy, Fixed Offshore Wind Noise
New Achievements in Underwater Noise Modelling for Offshore Pile Driving Trimoreau, B., Lutzen, R., Kringelum, J. Conference Paper Wind Energy, Fixed Offshore Wind Noise
Hydro Sound Measurements during the Installation of Large Diameter Offshore Piles using Combinations of Independent Noise Mitigation Systems Burns, B., Stein, P., Kuhn, C. Conference Paper Wind Energy, Fixed Offshore Wind Noise
New Hydro Sound Dampers to Reduce Piling Underwater Noise Elmer, K., Savery, J. Conference Paper Wind Energy, Fixed Offshore Wind Noise
The New Noise Mitigation System 'Hydro Sound Dampers': History of Development with Several Hydro Sound and Vibration Measurements Burns, B., Kuhn, C., Stein, P. Conference Paper Wind Energy, Fixed Offshore Wind Noise
Is EIA Part of the Wind Power Planning Problem? Smart, D., Stojanovic, T., Warren, C. Journal Article Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Understanding Bird Collisions at Wind Farms: An Updated Review on the Causes and Possible Mitigation Strategies Marques, A., Batalha, H., Rodrigues, S. Journal Article Wind Energy, Fixed Offshore Wind Collision Birds
Gwynt y Môr Siemens Project Site Wind Energy, Fixed Offshore Wind
Assessing the Underwater Acoustics of the World's Largest Vibration Hammer (OCTA-KONG) and Its Potential Effects on the Indo-Pacific Humpbacked Dolphin (Sousa chinensis) Wang, Z., Wu, Y., Duan, G. Journal Article Wind Energy, Fixed Offshore Wind Noise Marine Mammals, Cetaceans
Strategic assessment of collision risk of Scottish offshore wind farms to migrating birds Wildfowl and Wetlands Trust (WWT) Journal Article Fixed Offshore Wind Birds
In Situ Mortality Experiments with Juvenile Sea Bass (Dicentrarchus labrax) in Relation to Impulsive Sound Levels Caused by Pile Driving of Windmill Foundations Dubusschere, E., de Coensel, B., Bajek, A. Journal Article Wind Energy, Fixed Offshore Wind Noise Fish, Demersal Fish
Use of Static Passive Acoustic Monitoring (PAM) for monitoring cetaceans at Marine Renewable Energy Installations (MREIs) for Marine Scotland Embling, C., Wilson, B., Benjamins, S. Guidance Marine Energy, Tidal, Wave, Wind Energy, Fixed Offshore Wind Noise Marine Mammals, Cetaceans
Pseudo Spectral Analysis of the Energy Entrainment in a Scaled Down Wind Farm Newman, J., Drew, D., Castillo, L. Journal Article Wind Energy, Fixed Offshore Wind Changes in Flow
Ecological research at the offshore test site "Alpha Ventus" to be used in an evaluation of the BSH's Standards for Environmental Impact Assessments (StUKplus) Beiersdorf, A., Boethling, M., Binder, A. Report Wind Energy, Fixed Offshore Wind Human Dimensions, Environmental Impact Assessment
Modeling Large Offshore Wind Farms Under Different Atmospheric Stability Regimes with the Park Wake Model Peña, A., Réthoré, P., Rathmann, O. Journal Article Wind Energy, Fixed Offshore Wind Physical Environment
Great Skua (Stercorarius skua) Movements at Sea in Relation to Marine Renewable Energy Developments Wade, H., Masden, E., Jackson, A. Journal Article Marine Energy, Wind Energy, Fixed Offshore Wind Birds, Seabirds
Case Studies From Implementation of the First Commercial Leasing Processes for Areas of the Outer Continental Shelf (OCS) Under the U.S. Renewable Energy Regulations Trager, E. Conference Paper Wind Energy, Fixed Offshore Wind Human Dimensions, Legal & Policy
The challenges and possible solutions of horizontal axis wind turbines as a clean energy solution for the future Ahmed, N., Cameron, M. Journal Article Wind Energy, Land-Based Wind, Fixed Offshore Wind Collision, Noise Bats, Birds
Strengthening the Role of Science in Marine Governance through Environmental Impact Assessment: A Case Study of the Marine Renewable Energy Industry Wright, G. Journal Article Wind Energy, Fixed Offshore Wind, Marine Energy Human Dimensions, Environmental Impact Assessment

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