Wind Semi - Equinor Unveils GW-size Floating Wind Concept

OE Staff
Monday, November 1, 2021

Norwegian energy giant Equinor has revealed its preferred floating wind foundation design for full-scale gigawatt (GW) commercial floating offshore wind in Scotland, if successful in ScotWind leasing round in Scotland.

Equinor said that the "Wind Semi" a semi-submersible wind turbine foundation, has been designed with flexibility, specifically to allow for fabrication and assembly based on local supply chain capabilities.

“We are ready to develop the next generation, large-scale commercial floating offshore wind in Scotland. By leveraging our twenty years of floating offshore wind experience and innovations, we plan to develop GW-size floating projects in one single phase. 

Implementing large-scale projects will accelerate Scotland’s energy transition to net zero. At 1GW, this project would be over 30 times bigger than Hywind Scotland, the UK’s and Equinor’s first floating project and have the potential to not only position Scotland as a leader in deepwater technology but also create opportunities for both existing suppliers and new entrants to the offshore wind sector”, says Sonja C. Indrebø, Equinor’s vice president of Floating Offshore Wind.

Equinor installed the first-ever floating offshore wind turbine in 2009, and operates Hywind Scotland (30 MW), the world’s first floating wind farm. 



"Since it began production in 2017, Hywind Scotland has consistently achieved a higher capacity factor than other UK wind farms, demonstrating the true potential of floating offshore wind," Equinor said.

“Hywind Scotland proved that the floating concept works, and as we move to the next generation floating offshore wind projects, we need to demonstrate that floating offshore wind is deployable at scale, in different geographies cost-effectively whilst bringing local benefits. We have seen the journey of fixed bottom offshore wind, and combined with our long experience in floating, we can take learnings into account as we design and innovate the concepts for full-scale GW floating wind farms”, says Indrebø.

Credit: Equinor

The Wind Semi

According to Equinor the Wind Semi has several features making it particularly suited for harsh waters, and solutions that can maximize the opportunities for the Scottish supply chain.

These include, as per Equinor:

Increased dependability: By introducing a passive ballast system, the Wind Semi has a simple substructure design, reducing the risk of system failure and the amount of maintenance needed

Simpler, more robust design: A flat plate design that is free from bracings, heave plates and complicated nodes that are prone to fatigue cracking

Flexibility towards the supply chain: With a harbor draught of less than 10 m, the Wind Semi’s turbine integration can be assembled at most industrialized ports. The Wind Semi’s simpler flat plate design enables the substructure to be built in blocks that can either be fabricated locally and/or shipped from other locations.

“Scotland can be in the forefront of this exciting technology. We asked ourselves how we can achieve industrial standardization and maximize local content opportunities to create additional and sustainable long-term value from floating offshore wind projects. With a design-based approach we’ve used our experience and gone right back to basics to incorporate this focus in the initial concept design”, says Indrebø.


Categories: Energy Renewable Energy Engineering Industry News Offshore Wind Activity Europe

Current News

ABS Rules Guide New Greener OSV

Researchers Study Offshore Control Systems for Remote Ops

Crowley Names Karl SVP and GM of Wind Services

Next US Energy Boom Could Be Wind Power in the Gulf of Mexico

Subscribe for OE Digital E‑News