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Home›R&D›Offshore Wind Majors Tackle Monopile Buckle
R&D

May 24, 2021 · about 5 years ago

Offshore Wind Majors Tackle Monopile Buckle

A collaborative project designed to investigate the effect of increased monopile size on the stability of the structures is underway, the Carbon Trust said. The Verification of Buckling Assessment and Behaviour in Large Monopiles (VERBATIM) project is a EUR 3 million joint industry initiative, due t

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Offshore Wind Majors Tackle Monopile Buckle

A collaborative project designed to investigate the effect of increased monopile size on the stability of the structures is underway, the Carbon Trust said.

The Verification of Buckling Assessment and Behaviour in Large Monopiles (VERBATIM) project is a EUR 3 million joint industry initiative, due to be completed by early 2023.

As turbines continue to get bigger, the supporting monopiles become larger in size with diameters beyond 10 metres and lengths over 60 metres.

These large monopiles have a higher risk of buckling below the seabed as the impact hammers used for installation and the forces exerted on the monopile has increased. To mitigate this potential risk, the industry has adopted greater wall thickness.

Increasing understanding of how monopiles behave during installation, and the potential defects that may reduce the lifetime of an offshore wind asset, could result in reduced wall thickness allowing safe, optimised structures, whilst also lowering costs, the Carbon Trust said.

Developers have to ensure that a monopile can be driven into the seabed without creating any structural defects. To date, current design practices have ensured successful pile installation without pile-tip buckling or refusal.

As monopiles become larger, the development of an enhanced design procedure to deliver safe and cost-effective foundations becomes increasingly important. Pile buckling has to be prevented as a key priority, using economic and time-efficient methods.

Who Is Involved?

With majority funding from the German Federal Ministry of Economics and Energy (BMWi), the project is part of the 7th Energy Research Programme of the German Federal Government, administrated by Projektträger Jülich (PTJ).

The current phase of the project involves participation and funding from nine international energy companies: EnBW, Equinor, Ørsted, RWE Renewables, ScottishPower Renewables, Shell, SSE Renewables, Total and Vattenfall, who collectively represent 75 per cent of Europe’s installed offshore wind capacity.

”The VERBATIM project comes at an important time for the offshore wind industry. With monopiles becoming ever larger, we need to ensure that turbines are installed on solid foundations; the involvement of the Offshore Wind Accelerator partners in this project will ensure that the impact of the results are maximised and that new guidelines and best practice will be implemented quickly,” the Carbon Trust’s project manager for VERBATIM, Dr. James Sinfield , said.

The project is being conducted by BAM, German’s Federal Institute for Materials Research and Testing, the Technical University of Berlin and JBO with support from the Carbon Trust.

Objectives

VERBATIM is investigating potential pile-tip buckling phenomena during installation and buckling instabilities of the embedded pile near the mud-line.

The objectives are to conduct analysis of conditions for pile buckling; develop and validate a Finite Element (FE) model and benchmarking study; develop a design procedure for pile embedment and stability checks; optimise pile design; consider economic and ecological aspects, develop technical design rules for piles.

”As turbine size and water depths increase, the dimensions of monopile foundations continue to grow and we are now dealing with diameters of 10m or more. To install them safely and cost-efficiently we need verified calculation models. Therefore, in VERBATIM we are specifically investigating the conditions for pile buckling,” BAM’s project coordinator, Dr. Matthias Baessler , said.

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