DNV Study Finds North Sea Offshore Wind Costs Could Drop 28 Percent by 2050

DNV has quantified how standardizing turbine designs and securing predictable project pipelines could reduce the average lifetime cost of electricity from North Sea offshore wind by up to 28% by 2050 in a high-volume scenario.

DNV led the joint industry project (JIP) with eight companies across the European offshore wind supply chain in response to rising project costs, uneven auction results, and stop-start development pipelines. The study models the levelized cost of energy (LCoE) under three North Sea scenarios from 2025 to 2050. It assesses longer production runs for current turbine platforms as an additional route to lower costs alongside turbine upscaling.

The scenarios show how market growth and production-run length affect costs:

  • Business as usual: Moderate growth and a short production run for the current turbine platform reduce LCoE by about 5% by 2035.
  • Longer production runs: Under the same market growth, the reduction reaches about 14% by 2035 and 25% by 2050.
  • Highest-volume scenario: Sustained deployment increases the reduction to about 19% by 2035 and 28% by 2050.

The model uses turbines around 15 MW on monopile foundations as a reference platform, without identifying 15 MW as the optimum size or limiting future turbine development.

“Suppliers invest against projects and firm capacity commitments. Europe’s offshore wind targets show the scale of long-term demand, but the industry also needs visible, investable project pipelines,” said Ditlev Engel, CEO, Energy Systems at DNV. “Steadier demand and longer production runs can make better use of existing capacity and show where investment is needed in support of the business case, firm delivery is the most important KPI of all and for bringing down the cost.”

The report calls on policymakers to turn deployment targets into visible project pipelines and consistent auction schedules; developers and turbine manufacturers to align earlier on design envelopes and interfaces; and suppliers to invest in identified constraints before broader capacity expansion.

Most of the modeled reduction comes from lower capital expenditure, led by turbine and project-development costs. Installation and substructure costs provide further savings. Stable platforms can also improve reliability and energy output, while shorter schedules bring generation online sooner.

DNV found that existing European capacity can broadly meet near-term demand for turbines around 15 MW. In the high-volume scenario, however, ports become a constraint and installation capacity approaches its limit, requiring expansion and selected upgrades. The immediate risk is underuse: irregular project flow weakens the case for investment and the industry’s ability to respond when demand rises.

“Industrialization and standardization have been discussed for years, but their economic impact had not been quantified in this detail. Our partners trusted DNV to lead frank discussions about commercially sensitive information. We have now documented significant cost-reduction potential up to 28% under favorable deployment conditions, giving the industry and governments a basis for practical work to make European offshore wind more cost-effective over the next decade,” explained Peter Constantin Brun, Global Segment Leader, Offshore Wind, DNV.

Stable designs and processes could also reduce waste, rework, transport, and energy use. Bringing projects online sooner could provide further environmental gains by displacing fossil-fuel generation.

To capture the full cost-saving potential identified in this study, policymakers should provide long-term certainty through consistent auction schedules, predictable project pipelines, and regulatory frameworks that enable greater industrialization and standardization across the offshore wind supply chain.

The scenarios draw on DNV’s Energy Transition Outlook 2025 and North Sea Forecast, project pipeline data, and the deployment ambitions in the Ostend and Hamburg declarations.

JIP Partners

  • DNV
  • EEW Special Pipe Constructions GmbH
  • Fred Olsen Windcarrier ASA
  • Groningen Seaports N.V.
  • Iemants N.V.
  • Jan De Nul N.V.
  • Van Oord Marine & Dredging Contractors
  • Vattenfall Vindkraft A/S
  • Vestas Wind Systems A/S

Access the Study

Industrialization and standardization in North Sea offshore wind

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