Ocean Tech & Data

T12 Engineering Gets OWGP Funding for Floating Wind Mooring Tech

T12 Engineering Gets OWGP Funding for Floating Wind Mooring Tech
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T12 Engineering has secured funding from the Offshore Wind Growth Partnership to advance its Floating Mooring System, a technology designed to reduce the cost and complexity of maintaining floating offshore wind turbines. The project follows a front-end engineering design study that confirmed the system's technical viability. T12 estimates the technology could save floating wind operators up to 3.6 million dollars per turbine over its operational lifetime by providing an alternative to mobilising large specialist vessels or towing turbines to shore.

 

Details of the Funding

 

T12 Engineering has secured new funding. It comes from the Offshore Wind Growth Partnership. The funding advances a specific technology. This is the company's Floating Mooring System. It targets floating offshore wind maintenance.

The technology addresses a clear goal. It aims to reduce maintenance cost and complexity. This applies to floating wind turbines. The funding supports its further development. It moves the technology toward commercial use.

 

Building on Prior Work

 

The project follows earlier development. A front-end engineering design study came first. This was supported by Scottish Enterprise in 2025. It confirmed the system's technical viability. This established a foundation for the current work.

The new project builds on this basis. It will refine the system design. It will improve structural efficiency. Material requirements will be reduced. This advances the technology toward deployment.

 

The Cost Savings

 

The technology promises significant savings. It could save operators substantial sums. This reaches up to 3.6 million dollars per turbine. The saving applies over the turbine's lifetime. This makes a strong economic case.

These savings come from avoiding costly operations. Major component failures pose challenges. Operators often mobilise specialist vessels. Alternatively, they tow turbines to shore. Both approaches are expensive and weather-dependent.

 

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The Technology Benefits

 

The system offers operational advantages. It improves maintenance access. It also widens operational windows. It reduces reliance on heavy-lift vessels. Lengthy offshore operations are minimised.

The project will develop supporting tools. These include ship-based installation tools. Maintenance tools are also planned. Heave-compensated systems feature among these. They handle blades, nacelles and generators.

 

Significance of the Technology

 

The technology addresses a growing need. Floating wind projects are moving offshore. They are also increasing in scale. Maintenance becomes more challenging as a result. The system offers a more predictable approach.

Company leadership highlighted the benefits. It described a safer, more efficient approach. This reduces costs significantly. The technology could support standardised maintenance. This suits the evolving floating wind sector.

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This article was contributed by an external writer affiliated with our publication.